
Organometallic Ligands
In this category, you will be able to find a large number of organometallic molecules used as ligands in biomolecules. These organometallic ligands can be used in organic chemistry and synthesis in the laboratory. They play a critical role in forming coordination complexes and catalyzing various chemical reactions. At CymitQuimica, we offer a diverse selection of high-quality organometallic ligands to support your research and industrial needs.
Subcategories of "Organometallic Ligands"
- BABIBOP
- BIMAH
- BINAP
- BINOL
- BIPHEN
- BIPHEP
- BPE
- Buchwald Ligands
- cataASium
- cataCXium
- CATHy Catalyst
- Cyclic Alkyl Amino Carbenes (CAAC)
- DANPHOS
- DPEN
- DPHEN
- DUPHOS
- HiersoPHOS
- Jacobsen Ligands
- JOSIPHOS
- MANDYPHOS
- METAMORPhos
- MONOPHOS
- NORPHOS
- PHANEPHOS
- PhenCar-Phos
- Phosphine
- Photocatalyst Ligands
- PINAP
- Pincer Ligands and Complexes
- Polyisobutylene (PIB) Ligands and Complexes
- Porphirines
- Pybox
- SDP
- SEGPHOS
- SIPHOS
- TADDOL
- ThrePHOX
- TROST
- UREAPhos
- WALPHOS
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Products of "Organometallic Ligands"
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6-OAU
CAS:6-OAU is a chemical compound categorized as a cytokinin-like molecule, which is derived from natural plant sources. It functions by modulating gene expression and hormone pathways involved in various plant growth and developmental processes. The mode of action of 6-OAU largely revolves around mimicking the activity of cytokinins, essential plant hormones that regulate cell division, shoot and root growth, as well as delay senescence. 6-OAU finds substantial application in agricultural and biological research due to its ability to influence plant morphology and stimulate growth under specific conditions. By altering hormonal balances, it allows scientists to explore plant developmental pathways, investigate stress responses, and enhance crop yields in controlled research settings. Its application in vitro aids in understanding plant tissue culture efficacy, serving as a valuable tool for developing robust plant regeneration protocols. In summary, 6-OAU remains a significant phytochemical for scientists studying plant physiology and biochemistry.Formula:C12H21N3O2Purity:Min. 95%Color and Shape:PowderMolecular weight:239.31 g/molKetanserin tartrate - Bio-X ™
CAS:Ketanserin is a 5-HT2A serotonin receptor antagonist that is used for the treatment of hypertension. This drug is also used in research to study the serotonergic system. Ketanserin has been found to also block the vesicular monoamine transporter 2. Ketanserin tartrate is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C22H22FN3O3•C4H6O6Purity:Min. 95%Color and Shape:PowderMolecular weight:545.51 g/molBIX nhe1 inhibitor
CAS:BIX is an NHE1 inhibitor, which is a small molecule compound derived from chemical synthesis. It specifically targets the Na+/H+ exchanger 1 (NHE1), a protein involved in the regulation of intracellular pH. The mode of action of BIX involves the inhibition of NHE1, leading to altered proton exchange across the plasma membrane. This action affects the cellular pH homeostasis and ion balance, which can influence various cellular processes such as cell proliferation, apoptosis, and migration. The applications of BIX are primarily in the field of biomedical research, where it is utilized to study the physiological and pathological roles of NHE1 in different cell types and tissues. It is particularly significant in cancer research, where NHE1 activity is often upregulated, contributing to the malignant phenotype. By understanding the effects of BIX, researchers can explore the potential therapeutic implications of targeting NHE1 in tumor progression, cardiovascular diseases, and other conditions influenced by dysregulated pH dynamics.Formula:C16H20ClF3N4O2Purity:Min. 95%Molecular weight:392.8 g/molPrasugrel - Bio-X ™
CAS:Prasugrel is a thienopyridine prodrug that inhibits the enzyme ADP-dependent P2Y purinergic receptor. Prasugrel inhibits platelet aggregation and the formation of blood clots by blocking the conversion of ADP to ATP on the surface of platelets, thus preventing the release of serotonin from platelets. The reaction products formed by prasugrel are similar to those formed by clopidogrel and include hydrogen sulfate ions and a thiol-containing metabolite. It has also been shown to have potent cytotoxic activity against melanoma cells and anti-inflammatory properties. Prasugrel is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C20H20FNO3SPurity:(%) Min. 95%Molecular weight:373.44 g/molABP 688
CAS:ABP 688 is a radiolabeled ligand, which is a synthetic compound used primarily in positron emission tomography (PET) to visualize metabotropic glutamate receptor subtype 5 (mGluR5) in vivo. Developed from chemical synthesis, ABP 688 acts by selectively binding to the allosteric site of the mGluR5 receptor with high affinity and specificity. When labeled with a positron-emitting isotope such as Carbon-11 or Fluorine-18, it allows for the non-invasive imaging and quantification of mGluR5 distribution and density in the brain. The primary use of ABP 688 is in neuroscience research, where it aids in the study of neurological and psychiatric disorders associated with glutamatergic dysfunction, such as schizophrenia, depression, and addiction. By providing detailed insights into mGluR5 expression patterns, this radioligand facilitates the understanding of pathophysiological mechanisms and the evaluation of therapeutic interventions targeting mGluR5. ABP 688 is not used for therapeutic purposes but remains a crucial tool in translational research bridging preclinical studies and human clinical trials.Formula:C15H16N2OPurity:Min. 95%Molecular weight:240.3 g/molA-889425
CAS:A-889425 is a novel small molecule compound that serves as a potent and selective antagonist. It is derived from synthetic chemical processes aimed at modulating ion channel activity specifically. The mode of action of A-889425 involves the selective inhibition of specific ion channels, which play critical roles in cellular signaling pathways and are implicated in various physiological processes. By selectively targeting certain ion channels, A-889425 demonstrates significant potential in altering cellular excitability and signal transduction, making it a valuable tool in both basic research and potential therapeutic contexts. Its applications are primarily concentrated in the investigation of channelopathies-diseases resulting from disturbed ion channel function-and in the development of novel treatments for conditions such as chronic pain, epilepsy, and cardiovascular disorders. Researchers utilize A-889425 in in vitro and in vivo studies to delineate the precise roles of specific ion channels and to explore the therapeutic windows of intervention. Its high specificity and efficacy make A-889425 an indispensable molecule in the arsenal of molecular pharmacology and neurobiological research.Formula:C19H18F3N3O3SPurity:Min. 95%Molecular weight:425.4 g/molRetosiban
CAS:Retosiban is a pharmaceutical compound that serves as an oxytocin receptor antagonist, derived through synthetic chemical synthesis. Its primary mechanism of action involves the selective inhibition of oxytocin receptors, which are critical in the uterine contractions that occur during labor. By blocking these receptors, Retosiban effectively reduces uterine muscle contractions, thus playing a crucial role in managing preterm labor. The primary application of Retosiban is in the obstetric field, where it is used to delay preterm birth by reducing the frequency, intensity, and duration of uterine contractions. This can help to prolong pregnancy, allowing for further fetal development and reducing risks associated with premature delivery. Although still under investigation in various clinical trial stages, Retosiban holds promise as a significant intervention for improving neonatal outcomes in pregnancies at risk of preterm birth. Research continues to assess its efficacy, safety profile, and potential long-term impacts on both maternal and fetal health.Formula:C27H34N4O5Purity:Min. 95%Molecular weight:494.6 g/mol(+)-Bicuculline - Bio-X ™
CAS:Bicuculline is a phthalide-isoquinoline compound and is a competitive GABA receptor antagonist. It blocks GABA’s inhibitory action, mimicking epilepsy. This compound is used in research to better study epilepsy. (+)-Bicuculline is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C20H17NO6Purity:Min. 99 Area-%Color and Shape:PowderMolecular weight:367.35 g/molBrobactam sodium
CAS:Brobactam sodium is a β-lactamase inhibitor, which is a chemically synthesized compound with the primary function of inactivating β-lactamase enzymes produced by certain bacteria. These enzymes can degrade β-lactam antibiotics, such as penicillins and cephalosporins, rendering them ineffective. Brobactam sodium functions by forming a covalent bond with the active site of β-lactamase enzymes, thus inhibiting their activity and allowing the concomitantly administered β-lactam antibiotic to exert its bactericidal effect on the susceptible pathogens. The primary application of Brobactam sodium is in combination therapies with β-lactam antibiotics to treat infections caused by β-lactamase-producing bacteria. This includes a range of Gram-positive and Gram-negative bacteria that are otherwise resistant to standard β-lactam antibiotics alone. Its use is critical in both clinical and research settings to study antibiotic resistance mechanisms and to develop effective therapeutic strategies against resistant bacterial infections.Formula:C8H9BrNNaO3SPurity:Min. 95%Molecular weight:302.12 g/mol17:0-20:4Pi (4) P
CAS:17:0-20:4Pi (4) P is a synthetic phosphoinositide, which is a type of phospholipid. It is typically sourced from laboratory synthesis, often incorporating stable isotopes or specific fatty acid chains to mimic natural compounds found in cell membranes. This product functions primarily as a probe in biochemical experiments, particularly for studying lipid signaling pathways within cells. The main mode of action of 17:0-20:4Pi (4) P involves its incorporation into cellular membranes where it participates in signaling processes by interacting with specific proteins that recognize phosphoinositides. These interactions are crucial for the regulation of various cellular activities, such as membrane trafficking, cytoskeletal rearrangement, and intracellular signaling cascades. The uses and applications of 17:0-20:4Pi (4) P are extensive in the field of cell biology and biochemistry. Researchers employ this compound to investigate the roles of phosphoinositides in various physiological and pathological contexts, including cancer, neurodegenerative diseases, and immune responses. Additionally, it serves as a valuable tool in the development of assays and in the exploration of potential therapeutic targets within lipid signaling pathways.Formula:C46H88N2O16P2Purity:Min. 95%Molecular weight:987.14 g/molPerfluorophenyl 3-(2-(2-(3-(2,5-dioxo-2H-pyrrol-1(5H)-yl)propanamido)ethoxy)ethoxy)propanoate
CAS:Perfluorophenyl 3-(2-(2-(3-(2,5-dioxo-2H-pyrrol-1(5H)-yl)propanamido)ethoxy)ethoxy)propanoate is a specialized chemical compound, belonging to the class of fluorinated organic esters. It is derived synthetically through a series of controlled chemical reactions involving perfluorophenyl groups and functionalized pyrrolidone derivatives. The presence of perfluorinated groups imparts unique physicochemical properties to the compound, including chemical inertness and hydrophobicity. This compound functions as a reactive agent in materials science and industrial applications. Its mode of action is primarily based on its ability to engage in specific interactions at a molecular level, making it an excellent candidate for surface modifications, particularly in engineering nanocomposites and advanced coatings. Applications of Perfluorophenyl 3-(2-(2-(3-(2,5-dioxo-2H-pyrrol-1(5H)-yl)propanamido)ethoxy)ethoxy)propanoate are broad and include enhancing the performance of polymer matrices, serving as a coupling agent, and improving the durability and water-resistance of materials. It is highly valued in research fields exploring advanced material properties, requiring precise, high-performance modifications.Formula:C20H19F5N2O7Purity:Min. 95%Molecular weight:494.4 g/molBostrycin
CAS:Bostrycin is a polyketide-type natural product, which is a secondary metabolite produced by certain fungi, particularly those belonging to the genus Aschersonia. Its source lies in the complex biosynthetic pathways of these fungi, which synthesize diverse polyketides with bioactive properties. The mode of action of Bostrycin involves disrupting cellular processes, predominantly through the inhibition of specific enzyme activities and interference with DNA processes, which can lead to cell cycle arrest and apoptosis in target cells. In research settings, Bostrycin has garnered interest due to its potential applications in pharmacology, particularly for its anticancer and antibiotic properties. Studies have shown its capacity to modulate cellular responses and inhibit the growth of various cancer cell lines. Furthermore, its antibiotic activity has been explored against several bacterial strains, indicating a potential role in developing new therapeutic agents. While its precise mechanisms continue to be investigated, Bostrycin represents a promising candidate for further study in drug development and biochemical research.Formula:C16H16O8Purity:Min. 95%Molecular weight:336.29 g/molPF 06409577
CAS:Potent agonist of a1β1γ1 5′-adenosine monophosphate-activated protein kinase (AMPK). It binds to the allosteric drug and metabolite (ADaM) site at the α- and β- subunit interface of AMPK. It has potential for the treatment of diabetic nephropathy. PF 06409577 reduces infections caused by flaviviruses, mediated by changes in the metabolism of lipids in host cells.Formula:C19H16ClNO3Purity:Min. 95%Color and Shape:White/Off-White SolidMolecular weight:341.79 g/molNBD 18:0 ceramide
CAS:NBD 18:0 ceramide is a synthetic fluorescent lipid analogue, which is derived from the naturally occurring sphingolipid, ceramide. This product is characterized by the attachment of a nitrobenzoxadiazole (NBD) fluorophore to the ceramide backbone, allowing it to serve as a tool for visualizing and studying lipid dynamics within biological membranes. The mode of action of NBD 18:0 ceramide involves its incorporation into lipid bilayers, where it can mimic natural ceramides and participate in membrane-related processes, while the attached NBD group provides a fluorescent signal. This fluorescence facilitates the tracking and analysis of ceramide distribution, interaction with other membrane constituents, and roles in cellular signaling pathways. NBD 18:0 ceramide is utilized in various applications, including studies on membrane organization, lipid trafficking, and sphingolipid metabolism. Its ability to integrate into cell membranes without significantly altering their native properties makes it a valuable tool for researchers investigating the functional roles of ceramides in health and disease. Through fluorescence microscopy and spectroscopy, scientists can gain insights into the dynamic behavior of lipids in live cells and model systems.Formula:C42H73N5O6Purity:Min. 95%Molecular weight:744.06 g/molIWP-2
CAS:Antagonist of Wnt signalling pathway by inhibiting the activity of Porcn, a member of the membrane-bound O-acyltransferase (MBOAT) family. Porcn is required for the palmitoylation of Wnt, mediating its secretion and signalling. Inhibits self-renewal in embryonic stem cells, whilst promoting differentiation to epiblast stem cells.Formula:C22H18N4O2S3Purity:Min. 95%Color and Shape:White To Off-White SolidMolecular weight:466.05919Sirt-IN-1
CAS:Inhibitor of pan-sirtuins (IC50 = 15, 10, 33 µM for SIRT1, 2 and 3 respectively), by binding to the active catalytic site. Selectivity for sirtuins was demonstrated when tested for activity on a panel of kinases, nuclear receptors, ion channels, transporters and GPCRs.Formula:C19H27N5O2SPurity:Min. 95%Molecular weight:389.52 g/molDoxazosin mesylate - Bio-X ™
CAS:Doxazosin is a first-generation α1-adrenergic receptor antagonist that is used in the treatment of hypertension and urinary obstruction, It has been shown to be effective in combination therapy for patients with benign prostatic hyperplasia. Doxazosin mesylate is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C23H25N5O5•CH4O3SPurity:Min. 95%Color and Shape:PowderMolecular weight:547.58 g/molPT2399
CAS:PT2399 is a delay line integrated circuit, which is a monolithic IC sourced from Princeton Technology Corp. It operates through analog and digital signal processing to achieve time-delay effects in audio signals. The PT2399 utilizes a digital delay line technique, converting analog input signals to digital through an integrated ADC. These digital signals are subsequently delayed and processed internally, after which they are reconverted back into analog form via a built-in DAC. Commonly employed in audio applications, the PT2399 is found in effects units such as guitar pedals, karaoke machines, and other sound processors where echo or delay effects are desired. Its versatility in manipulating audio signals, coupled with relatively low noise and distortion characteristics, makes it a favored component in the design of cost-effective audio equipment. The ability to produce varied delay times through external control means it can be intricately integrated into custom audio processing solutions, providing flexibility and adaptability for advanced acoustic experimentation and application.Formula:C17H10F5NO4SPurity:Min. 95%Molecular weight:419.3 g/molTryphos(R)
CAS:Tryphos(R) is a specialized solvent and extractant, derived from organophosphorus compounds. This product originates from a chemically synthesized source, characterized by the complex manipulation of phosphorus chemistry to achieve its specific functional properties. Its mode of action involves the selective solvation and coordination with target molecules, which facilitates the separation or purification of specific compounds via liquid-liquid extraction processes. The applications of Tryphos(R) are diverse, primarily focused on the fields of analytical chemistry and industrial processes. It is utilized for its efficacy in the separation and extraction of metal ions, particularly in the purification of rare earth elements and transition metals. Furthermore, Tryphos(R) is employed in organic synthesis as a reagent that enables specific transformations by stabilizing intermediates or enhancing the reactivity of substrates. Its unique chemical properties make it a vital tool in laboratories and industries seeking precision and efficiency in chemical separations and syntheses.Formula:C28H54P2Purity:Min. 95%Molecular weight:452.68 g/molPPDA
CAS:PPDA is a synthetic chemical compound, which is an aromatic amine derived from aniline through a series of chemical reactions involving nitration and reduction. Its mode of action involves acting as an intermediate or precursor in a variety of organic synthesis processes, playing a pivotal role in the formation of complex organic structures. PPDA's electrophilic properties make it an essential component in producing dyes, polymers, and pharmaceuticals by facilitating specific chemical transformations. Additionally, it demonstrates high reactivity in coupling reactions due to its amine group, enhancing its utility in the synthesis of polymers and advanced materials. In scientific research, PPDA is valuable for its role in producing polymers with tailored properties and for synthesizing pharmaceutical compounds that require precise and efficient chemical modifications. The compound's ability to participate in diverse chemical reactions under controlled conditions makes it indispensable in both industrial and laboratory settings, where it contributes to the innovation of new materials and drug development strategies. Its applications extend to dye production, where it aids in fabricating stable colorants used in various industries.Formula:C21H18N2O5Purity:Min. 95%Molecular weight:378.38 g/molN-Cyclohexyl-N'-(2-morpholinoethyl)carbodiimide methyl-p-toluenesulfonate
CAS:N-Cyclohexyl-N'-(2-morpholinoethyl)carbodiimide methyl-p-toluenesulfonate, also known as CMC, CMCT, Morpho-CDI and CME-carbodiimide, is a reagent widely used in the detection of post-transcriptional modifications on nucleosides in RNA. RNA chemical probing is a powerful technology used to address numerous biological questions. The main application of CMC is the chemical modification of pseudouridine in RNA, in order to detect it and quantify it using analytical techniques such as primer extension or MALDI. Pseudouridine is the most abundant modification occurring in cellular RNA, and is responsible for the increased rigidity of the phosphate backbone and base stacking, impacting important RNA interactions.Formula:C21H33N3O4SPurity:Min. 95 Area-%Color and Shape:White Off-White PowderMolecular weight:423.57 g/molPrifuroline
CAS:Please enquire for more information about Prifuroline including the price, delivery time and more detailed product information at the technical inquiry form on this pageFormula:C14H16N2OPurity:Min. 95%Molecular weight:228.29 g/molAloe-emodin - Bio-X ™
CAS:Aloe-emodin is an anthraquinone derivative that is found in the aloe plant. It has a strong stimulant laxative action. Aloe-emodin may be useful in the treatment of cancer, as it inhibits cell proliferation by inducing apoptosis. Aloe-emodin is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C15H10O5Purity:Min. 95%Color and Shape:PowderMolecular weight:270.24 g/molAzilsartan medoxomil
CAS:Azilsartan medoxomil is an antihypertensive drug, which is a prodrug of the angiotensin II receptor blocker azilsartan. It is synthesized through a chemical process involving the modification of the medoxomil ester, converting it into its active form upon absorption in the gastrointestinal tract. The primary mode of action of azilsartan medoxomil involves selective antagonism of the angiotensin II type 1 (AT1) receptor. By blocking the effects of angiotensin II-a potent vasoconstrictor-azilsartan medoxomil effectively reduces vascular resistance, leading to decreased blood pressure. Azilsartan medoxomil is primarily used in the management of hypertension. By lowering elevated blood pressure, it helps reduce the risk of cardiovascular events such as strokes and myocardial infarctions. The prodrug formulation ensures efficient gastrointestinal absorption and subsequent rapid activation, making it an effective therapeutic option in the clinical setting. Given its specific receptor antagonism, azilsartan medoxomil offers targeted therapeutic intervention, contributing to improved compliance and patient outcomes in hypertensive patients.Formula:C30H24N4O8Purity:Min. 95%Color and Shape:White PowderMolecular weight:568.53 g/molRepaglinide - Bio-X ™
CAS:Repaglinide is an antihyperglycemic drug that is used for the improvement of glycemic control in diabetes. This drug acts on the beta cells of the pancreas and binds to specific receptors on the beta cells known as ATP-sensitive potassium channels. As a result, this promotes insulin secretion from beta cells. Repaglinide is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C27H36N2O4Purity:Min. 95%Color and Shape:PowderMolecular weight:452.59 g/molCCT020312
CAS:CCT020312 is a small-molecule inhibitor that is a selective and potent inhibitor of the P21-activated kinase 4 (PAK4), which is sourced through synthetic organic chemistry. By inhibiting PAK4, this compound disrupts the signaling pathways that are often upregulated in various malignancies, involving proliferation, survival, and cytoskeletal reorganization. Through competitive binding at the ATP-binding site of PAK4, CCT020312 effectively suppresses kinase activity, which is crucial for downstream signaling events associated with oncogenic processes. The application of CCT020312 is significant in cancer research, where it is used to explore the role of PAK4 in tumorigenesis. By studying its effects in cell lines and animal models, researchers can analyze changes in cellular behavior including growth arrest and apoptosis. CCT020312 serves as an invaluable tool in validating PAK4 as a potential therapeutic target and understanding the molecular mechanisms underlying cancer progression. Its application extends to preclinical studies aimed at developing PAK4-targeted therapies and enhancing the efficacy of existing anti-cancer approaches.Formula:C31H30Br2N4O2Purity:Min. 95%Molecular weight:650.4 g/molNitric oxide synthase, endothelial (492-507)
Peptide derived from the endothelial nitric oxide synthase which synthesises nitric oxide in order to protect endothelial cells from vascular diseases, atherosclerosis and thrombosis.Purity:Min. 95%Color and Shape:PowderMolecular weight:1,788.1 g/molD8-MMAE
CAS:D8-MMAE is a chemical conjugate product, which is composed of the highly potent cytotoxic agent monomethyl auristatin E (MMAE) linked to targeting moieties, often through a stable linker. This product is synthetic in origin, derived from auristatins, which are analogs of dolastatin 10, a natural peptide isolated from marine organisms. The mode of action of D8-MMAE involves specific binding to cellular targets, typically through an antibody-drug conjugate (ADC) mechanism, where the conjugate binds to antigens on cancer cells. Once internalized, the linker is cleaved, releasing MMAE within the cell. MMAE then binds to tubulin, inhibiting cell division by disrupting the microtubule network, leading to apoptosis. D8-MMAE is utilized primarily in cancer research and development, especially in the creation of ADCs for targeted cancer therapy. Its applications lie in delivering cytotoxic agents directly to cancer cells, thereby minimizing off-target effects and enhancing therapeutic index. This targeted approach is crucial in developing treatments for various malignancies, offering a pathway to more effective and personalized oncology therapies.Formula:C39H67N5O7Purity:Min. 95%Molecular weight:726 g/molFenoprofen calcium
CAS:Inhibitor of COX-1 and COX-2 cyclooxygenasesFormula:C30H26CaO6Purity:Min. 95%Color and Shape:PowderMolecular weight:524.62 g/molTerbutaline hemisulfate
CAS:Controlled ProductBeta-2-adrenergic receptor agonistFormula:C12H19NO3H2SO4Purity:Min. 98 Area-%Color and Shape:White Off-White PowderMolecular weight:274.32 g/molMardepodect
CAS:Mardepodect is an investigative pharmaceutical compound, which is derived synthetically through a series of complex chemical reactions involving multiple steps of organic synthesis. This compound operates primarily as a selective phosphodiesterase-9 (PDE9) inhibitor, modulating intracellular signaling pathways by preventing the degradation of cyclic guanosine monophosphate (cGMP). The resulting elevated levels of cGMP lead to various downstream biological effects that can be explored for therapeutic benefits. Mardepodect is utilized in research settings to investigate potential treatments for neurological disorders and may have implications in other therapeutic areas due to its role in modulating key signaling pathways involved in cellular function and communication. Its mode of action allows scientists to explore the intricate mechanisms of disease pathogenesis and neuronal signaling, providing valuable insights into the development of new therapeutic strategies. The precise effects on the cGMP pathways could yield significant breakthroughs in understanding conditions like Alzheimer's disease, schizophrenia, and other cognitive disorders.Formula:C25H20N4OPurity:Min. 95%Molecular weight:392.45 g/molrac Atomoxetine-d5 hydrochloride
CAS:rac-Atomoxetine-d5 hydrochloride is an analog of the drug Atomoxetine, which is used to treat attention deficit hyperactivity disorder (ADHD). It is a ligand that binds to the α-adrenergic receptor. The racemic mixture of Atomoxetine is used as a research tool and as an analytical standard in pharmacology. The rac-Atomoxetine-d5 hydrochloride has been shown to be an inhibitor of protein interactions, such as those with the α2A-adrenergic receptor.Formula:C17H22ClNOPurity:Min. 95%Molecular weight:296.8 g/molRef: 3D-YFC06595
Discontinued productZoledronic acid, disodium salt, tetrahydrate
CAS:Farnesyl pyrophosphate synthase inhibitor; hepatic de novo lipogenesis inhibitorFormula:C5H8N2Na2O7P2·4H2OPurity:Min. 98 Area-%Color and Shape:PowderMolecular weight:388.11 g/molN-Cyclohexylpropyl deoxynojirimycin, hydrochloride
CAS:N-Cyclohexylpropyl deoxynojirimycin, hydrochloride is a specific glucosidase inhibitor, which is derived from natural sources, notably microorganisms like Streptomyces species. This compound functions by competitively inhibiting alpha-glucosidases, enzymes that play a crucial role in the cleavage of glucose moieties from glycoproteins and glycolipids. Its mode of action involves binding to the active site of these enzymes, thereby preventing the normal catalytic process. The primary use of N-Cyclohexylpropyl deoxynojirimycin, hydrochloride is in biochemical research to study the pathways of glycoprotein processing and the role of glucosidases in various biological systems. It is particularly useful for dissecting the mechanisms underlying enzyme catalysis and substrate specificity in glycobiology. Furthermore, it has applications in elucidating the function of glycosidases in pathological conditions, such as lysosomal storage disorders and diabetes. By inhibiting glucosidase activity, researchers can gain insights into the modulation of cellular processes linked to carbohydrate metabolism, enhancing the understanding of disease mechanisms and potential therapeutic approaches.Formula:C15H30ClNO4Purity:Min. 95%Molecular weight:323.85 g/molFN-1501
CAS:FN-1501 is a synthetic bioactive compound, which is engineered through combinatorial chemistry with a specific focus on enzymatic activity. This product has been meticulously designed to emulate protease-like activity, facilitating the cleavage of peptide bonds within protein substrates. The mode of action involves the catalytic hydrolysis of peptide bonds, thereby enabling the precise dissection of protein structures for analytical studies. FN-1501 is primarily utilized in biochemical research for the mapping of protein sequences and the elucidation of protein tertiary and quaternary structures. Its application extends to proteomic studies where it assists in the digestion of proteins prior to mass spectrometry analysis. This allows for a detailed investigation of protein modifications, interactions, and mechanisms. FN-1501's stability and specificity make it an invaluable tool in structural biology research, advancing our understanding of protein function and interaction in complex biological systems.Formula:C22H25N9OPurity:Min. 95%Molecular weight:431.5 g/molYoda 1
CAS:Agonist of mechanosensitive cation channel Piezo1, which is expressed in bladder, kidney, lung, colon and skin tissues. Yoda 1 stabilizes the Piezo1 channel in an open state and reduces the threshold for mechanical activation. Yoda 1 also partially activates the Piezo1 channel in absence of mechanical stimuli.Formula:C13H8Cl2N4S2Purity:Min. 95%Color and Shape:PowderMolecular weight:355.27 g/molPravastatin sodium
CAS:HMG-CoA reductase inhibitorFormula:C23H35NaO7Purity:Min. 98 Area-%Color and Shape:PowderMolecular weight:446.51 g/molEsomeprazole magnesium trihydrate - Bio-X ™
CAS:Esomeprazole is an anti-ulcer drug that is used in the treatment of GERD and to reduce the risk of ulcers associated with NSAID’s. This drug is a proton pump inhibitor that suppresses the release of gastric acid in the stomach. Esomeprazole magnesium trihydrate is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C34H36MgN6O6S2·3H2OPurity:Min. 95%Color and Shape:PowderMolecular weight:767.17 g/molTVB-3664
CAS:TVB-3664 is an analytical instrument, specifically designed for high-precision monitoring and measurement applications. It is engineered with advanced sensor technologies that provide enhanced detection capabilities, allowing for the accurate collection of data regarding various chemical and physical parameters. The source technology behind TVB-3664 involves state-of-the-art manufacturing processes, integrating robust materials with cutting-edge electronics to ensure durability and precision. The mode of action of TVB-3664 relies on its ability to autonomously calibrate and adapt to varying environmental conditions, ensuring that it delivers reliable and consistent results. This is achieved through integrated software algorithms that process raw data in real time, adjusting the sensitivity and specificity of the measurements as needed. TVB-3664 is utilized across a range of scientific disciplines, including environmental monitoring, industrial processing, and laboratory research, where precise measurement is crucial. Its applications extend into fields such as chemistry, biology, and physics, and it serves as an essential tool in both applied and theoretical research settings. Scientists appreciate the device’s versatility, robustness, and high accuracy, making it a preferred choice for complex analyses and long-term experiments.Formula:C25H23F3N4O2Purity:Min. 95%Color and Shape:PowderMolecular weight:468.5 g/mol5-Phenacyloxy-2H-isoquinolin-1-one
CAS:5-Phenacyloxy-2H-isoquinolin-1-one is a synthetic chemical compound, which is primarily utilized as a biochemical inhibitor. This compound is derived from isoquinolinone sources and is distinguished by its phenacyloxy moiety linking it to the isoquinolinone core structure. Its mechanism of action involves selectively inhibiting specific biological pathways, a characteristic that makes it a valuable tool in the study of enzyme regulation and signal transduction processes. By interfering with these pathways, 5-Phenacyloxy-2H-isoquinolin-1-one provides insights into cellular functions and the biochemical landscape. In research settings, this compound is extensively applied in the exploration of therapeutic targets, particularly within the realms of cancer research and neurobiology. Scientists harness its ability to disrupt specific enzymatic activities to elucidate molecular mechanisms and identify potential intervention points for drug development. The versatility and specificity of 5-Phenacyloxy-2H-isoquinolin-1-one render it an indispensable reagent in the biochemical toolbox, facilitating advancements in molecular biology and pharmacology.Formula:C17H13NO3Purity:Min. 95%Molecular weight:279.29 g/molPF-04929113 (Mesylate)
CAS:PF-04929113 (Mesylate) is a small molecule inhibitor, which is derived from synthetic sources, designed to target the phosphoinositide 3-kinase (PI3K) pathway with high specificity and potency. This compound exerts its mode of action through the inhibition of PI3K activity, a pivotal signaling molecule involved in multiple cell processes including growth, metabolism, and survival. By blocking PI3K, PF-04929113 disrupts downstream signaling pathways, leading to reduced cellular proliferation and inducing apoptosis in cancer cells. Researchers primarily use PF-04929113 in preclinical studies to investigate its therapeutic potential in various malignancies where PI3K signaling is dysregulated, such as breast, ovarian, and prostate cancers. Its selective inhibition of PI3K offers insights into the development of targeted cancer therapies and enhances understanding of oncogenic signaling pathways. The compound's efficacy and specificity make it a valuable tool in cancer biology, enabling scientists to dissect complex cellular processes and explore novel therapeutic interventions.Formula:C25H30F3N5O4•CH4O3SPurity:Min. 95%Molecular weight:521.54 g/molTenoxicam - Bio-X ™
CAS:Tenoxicam is a non-steroidal anti-inflammatory drug that is used to reduce pain and inflammation in conditions such as arthritis. This drug works by inhibiting the enzyme cyclooxygenase or COX. As a result of this inhibition, this drug reduces the production of prostaglandins and therefore leads to a decrease in pain and inflammation. Tenoxicam is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C13H11N3O4S2Purity:Min. 95%Color and Shape:PowderMolecular weight:337.38 g/mol(3aS)-3a-Hydroxy-1-(3-hydroxyphenyl)-6-methyl-2,3-dihydropyrrolo[2,3-b]quinolin-4-one
CAS:(3aS)-3a-Hydroxy-1-(3-hydroxyphenyl)-6-methyl-2,3-dihydropyrrolo[2,3-b]quinolin-4-one is an alkaloid compound, which is characterized by its complex polycyclic structure. Derived from natural sources such as plant species or synthesized through advanced organic chemistry techniques, this compound demonstrates potential through its complex pharmacodynamics. It exhibits activity by interacting with specific biological receptors, influencing signal transduction pathways, and modulating enzyme activities, thereby eliciting a variety of physiological responses. In scientific research, (3aS)-3a-Hydroxy-1-(3-hydroxyphenyl)-6-methyl-2,3-dihydropyrrolo[2,3-b]quinolin-4-one is primarily explored for its pharmacological applications, possibly offering therapeutic benefits in areas such as oncology or neurology. Its ability to modulate cellular and molecular mechanisms makes it a point of interest in drug development and medicinal chemistry. Ongoing studies aim to elucidate its full spectrum of biological activities, safety profile, and therapeutic potential for future clinical applications.Formula:C18H16N2O3Purity:Min. 95%Molecular weight:308.3 g/molSNIPER(ABL)-033
CAS:SNIPER(ABL)-033 is an advanced biotechnological tool designed to facilitate targeted research interventions. It is sourced from a collaborative effort between molecular biology specialists and biochemical engineers, ensuring robustness in complex biological environments. The product operates via advanced Antibody-Based Ligand (ABL) technology, which allows for the precise targeting and modulation of specific cellular pathways. Its mode of action involves binding to distinct molecular markers, facilitating targeted interference or activation of biological processes with high specificity and minimized off-target effects. SNIPER(ABL)-033 finds its applications primarily in the fields of cancer research, gene editing, and signal transduction studies. It enables scientists to dissect intricate biological pathways with enhanced accuracy, providing critical insights into cellular function and pathology. Its innovative approach aids in elucidating the mechanisms underlying disease progression and therapeutic responses, making it an indispensable tool in both basic and applied research settings.Formula:C61H73F3N10O9S2Purity:Min. 95%Molecular weight:1,211.4 g/molBis-imidazole phenol idh1 inhibitor
CAS:Bis-imidazole phenol IDH1 inhibitor is a small-molecule therapeutic, which is a novel compound synthesized to specifically target mutant forms of isocitrate dehydrogenase 1 (IDH1). It operates by binding to the mutant IDH1 enzyme and inhibiting its aberrant function, which involves converting alpha-ketoglutarate to an oncometabolite, 2-hydroxyglutarate (2-HG). This conversion leads to epigenetic changes that drive the tumorigenesis process. The utility of Bis-imidazole phenol IDH1 inhibitors lies in their potential applications within oncology, specifically for treating cancers harboring IDH1 mutations, such as certain gliomas and acute myeloid leukemia. By reducing the production of 2-HG, these inhibitors aim to reverse the epigenetic reprogramming of cancer cells, thereby inhibiting tumor growth and progression. This targeted approach offers a promising direction for personalized cancer therapy, helping to improve outcomes for patients with mutant IDH1-associated malignancies. Researchers continue to explore the pharmacokinetic properties, efficacy, and safety profiles of these compounds in pre-clinical and clinical settings to fully understand their therapeutic potential.Formula:C22H30N4OPurity:Min. 95%Molecular weight:366.5 g/molCP 94253 Hydrochloride
CAS:CP 94253 Hydrochloride is a selective 5-HT1B receptor agonist, which is a synthetic compound derived through chemical synthesis in laboratory settings. Its mode of action involves selectively binding to and activating the 5-HT1B serotonin receptors, which play a significant role in the modulation of neurotransmitter release in the central nervous system. This receptor interaction influences serotonin levels, impacting various neurological pathways. The primary use and application of CP 94253 Hydrochloride lie in neuroscience research, where it serves as a critical tool for exploring serotonergic system functions and their implications in mood disorders, pain perception, and other neurological conditions. Research on CP 94253 Hydrochloride contributes to a deeper understanding of serotonin's role in the brain and the potential development of novel therapeutic agents targeting serotonin receptors. Additionally, this compound may be used in experimental pharmacology to investigate receptor-specific pathways and their wider physiological effects.Formula:C15H19N3O•HClPurity:Min. 95%Molecular weight:257.33 g/molAZD 7762 Hydrochloride
CAS:AZD 7762 Hydrochloride is a small-molecule inhibitor, which is a synthetic compound designed to target specific molecular pathways. It is manufactured as a hydrochloride salt for increased stability and solubility. The product principally acts by inhibiting checkpoint kinases, specifically Chk1 and Chk2, which play critical roles in the DNA damage response pathway. By inhibiting these kinases, AZD 7762 disrupts the cell cycle checkpoint control, leading to the accumulation of DNA damage in cancer cells, ultimately inducing apoptosis. This compound has been extensively studied for its potential in cancer therapy. Its ability to sensitize tumor cells to DNA-damaging agents and radiation makes it a promising candidate for combination therapy in oncology. Research has focused on its application in various cancer types, including pancreatic and lung cancers, where it enhances the efficacy of chemotherapeutic agents. The ongoing investigation aims to further elucidate its pharmacodynamics, optimize dosing regimens, and explore its full therapeutic potentials.Formula:C17H19FN4O2S·HClPurity:Min. 95%Molecular weight:362.42 g/molBMS-582949
CAS:BMS-582949 is an investigational pharmaceutical compound, specifically a chemokine receptor antagonist, that has been derived through synthetic chemical processes. Its mode of action involves selectively inhibiting the C-C chemokine receptor type 2 (CCR2), a receptor involved in the migration and activation of monocytes and other immune cells. By blocking CCR2, BMS-582949 aims to modulate inflammatory pathways that are implicated in various diseases. This compound has been explored for its potential applications in treating inflammatory conditions, owing to its ability to interfere with chemokine-driven immune cell infiltration into tissues. Such applications could include the management of disorders such as rheumatoid arthritis and other chronic inflammatory diseases. While still in the experimental phase, BMS-582949 represents a targeted approach to managing inflammation by disrupting specific immune signaling pathways, thereby potentially offering a novel therapeutic avenue distinct from traditional anti-inflammatory drugs.Formula:C22H26N6O2Purity:Min. 95%Molecular weight:406.48 g/molDeferasirox Fe3+ Chelate
CAS:Iron chelatorFormula:C21H12FeN3O4Purity:Min. 95%Molecular weight:426.18 g/molBivalirudin
CAS:Selectively inhibits α- and ζ-thrombins and elicits procoagulant effects. Reduces platelet deposition in a rat carotid endarterectomy model. Has therapeutic potential as an anti-thrombotic agent in patients with heparin-associated thrombosis.Formula:C98H138N24O33Purity:Min. 95%Color and Shape:White SolidMolecular weight:2178.98581Peroxy Orange 1
CAS:Peroxy Orange 1 is an advanced cleaning agent, which is a hydrogen peroxide-based product enriched with surfactants and orange oil extracts. This formulation originates from a blend of both synthetic and natural sources, integrating the oxidizing power of hydrogen peroxide with the cleaning efficacy of citrus oils. Peroxy Orange 1 operates through the oxidative capabilities of hydrogen peroxide, which breaks down into water and oxygen. This decomposition releases free radicals that attack and degrade organic matter, effectively lifting stains and disinfecting surfaces. The addition of orange oil enhances its cleaning properties by dissolving grease and imparting a refreshing aroma. This product is primarily utilized for its effectiveness in industrial and research settings for cleaning surfaces contaminated with organic residues. Its applications span lab environments, healthcare institutions, and facilities demanding stringent hygiene standards. The synergy between its components ensures a comprehensive cleaning mechanism, addressing both microbial contamination and the removal of organic debris, without leaving harmful residues. This makes Peroxy Orange 1 particularly suited for scenarios where both effective cleaning and environmental safety are paramount.Formula:C32H32BNO5Purity:Min. 95%Molecular weight:521.4 g/molAP 1903
CAS:AP 1903 is a synthetic small molecule, which acts as a dimerizer ligand. It is derived from the modification of the macrolide antibiotic rapamycin to remove its immunosuppressive effects, thus enabling targeted control of cellular processes. The mode of action involves binding to engineered receptors on the cell surface that contain drug-dependent domains. This binding triggers the dimerization of these receptors, leading to downstream signaling and subsequent cellular responses. AP 1903 is utilized primarily in research settings for its capacity to regulate cellular functions with high precision. It is often employed in experimental systems where temporal control over gene expression or cellular behavior is necessary. This allows scientists to study complex cellular pathways and perform controlled manipulations of cellular actions in various model organisms. Through its specific interaction with engineered receptors, AP 1903 provides a powerful tool for elucidating the roles of specific signaling pathways in cell biology and for developing potential therapeutic strategies.Formula:C78H98N4O20Purity:Min. 95%Color and Shape:PowderMolecular weight:1,411.65 g/mol1-Desoxymethylsphingosine
CAS:1-Desoxymethylsphingosine is a synthetic compound, which is derived from sphingosine analogs, designed for research purposes. As a chemical entity, it is typically synthesized in laboratories specializing in lipid chemistry. The mode of action of 1-Desoxymethylsphingosine involves the inhibition of enzymes involved in sphingolipid metabolism, primarily targeting the sphingosine kinase pathway. This inhibition affects the regulation of bioactive sphingolipids, which play crucial roles in cell signaling and apoptosis. The uses and applications of 1-Desoxymethylsphingosine are predominantly in biomedical research. Scientists utilize this compound to study the biochemical pathways of sphingolipids, providing insights into their roles in various cellular processes and potential implications in diseases such as cancer, neurodegenerative disorders, and inflammatory conditions. By inhibiting specific enzymes, researchers can dissect the complex network of lipid signaling, aiding in the identification of therapeutic targets and the development of novel therapeutic strategies.Formula:C17H35NOPurity:Min. 95%Molecular weight:269.47 g/molTriptorelin acetate
CAS:Controlled ProductGonadotropin-releasing hormone agonistFormula:C64H82N18O13•C2H4O2Purity:Min. 95 Area-%Color and Shape:PowderMolecular weight:1,371.5 g/molS 32212 hydrochloride
CAS:S 32212 hydrochloride is a selective serotonin receptor antagonist, which is synthesized chemically. Its mode of action involves the selective binding and inhibition of serotonin receptors in the brain, particularly those involved in the modulation of mood, anxiety, and other neurological processes. By targeting these receptors, S 32212 hydrochloride influences serotonin pathways, providing insights into potential therapeutic strategies for neuropsychiatric conditions. S 32212 hydrochloride is utilized primarily in research settings to investigate the complex roles serotonin receptors play in neurobiology. It aids in elucidating the mechanisms underlying mood disorders, offering valuable data for the development of novel antidepressant or anxiolytic agents. The compound serves as a tool for scientists exploring the neuropharmacology of serotonin systems and their impact on behavioral and physiological responses.Formula:C25H28N4O2·HClPurity:Min. 95%Molecular weight:452.98 g/molDoxepin HCl - Bio-X ™
CAS:Controlled ProductDoxepin is a psychotropic agent that is used in the treatment of depression, anxiety and insomnia. This drug has antidepressant and anxiolytic properties. This mechanism of action for this drug is not clear however it is known to be a histamine receptor antagonist. Doxepin HCl is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C19H21NO•HClPurity:Min. 95%Color and Shape:PowderMolecular weight:315.84 g/molRocuronium bromide
CAS:Aminosteroid; neuromuscular blocker in anaestheticsFormula:C32H53BrN2O4Purity:Min. 95%Color and Shape:PowderMolecular weight:609.68 g/molVipivotide tetraxetan linker
CAS:Vipivotide tetraxetan is a radioactive therapeutic agent, which is a radioligand conjugate composed of a DOTA chelator linked to a targeting moiety. The source of this compound lies in its synthesis, where the DOTA ligand is conjugated to a peptide or small molecule that targets specific cell surface antigens expressed on cancer cells. The mode of action involves the targeted delivery of a radioactive isotope directly to cancer cells. Once the linker binds to the desired target, the radioactive component emits radiation, leading to DNA damage and the subsequent death of the targeted cells. This highly targeted approach allows for minimizing damage to surrounding healthy tissue, a significant advantage over conventional radiotherapy. Vipivotide tetraxetan is used primarily in the treatment of certain types of cancers, notably those expressing the specific cell surface markers the ligand targets. Its applications are primarily in clinical settings where precise targeting of malignant cells is necessary, often employed in cases where tumors have proven resistant to standard treatments. This approach represents a cutting-edge advancement in personalized medicine, offering a tailored therapeutic option with the potential for improved efficacy and reduced toxicity.Formula:C33H45N5O9Purity:Min. 95%Color and Shape:PowderMolecular weight:655.7 g/molPS210
CAS:PS210 is a highly advanced chemical compound, which is a synthetic catalyst designed for precision-driven applications in chemical laboratories. It is derived from a meticulous synthesis process involving transition metals and organic ligands. The mode of action of PS210 involves facilitating specific chemical reactions by lowering the activation energy, thereby increasing reaction rates without being consumed in the process. The uses and applications of PS210 are extensive and notably valuable in areas such as organic synthesis, industrial catalysis, and materials science research. It serves a crucial role in accelerating reactions in the synthesis of complex molecules, offering enhanced efficiency and selectivity. Additionally, PS210 is instrumental in sustainable chemistry processes, contributing to reduced energy consumption and minimized waste generation in large-scale chemical manufacturing. Its reliability and effectiveness make it a cornerstone for scientists seeking to innovate and optimize their experimental pathways.Formula:C19H15F3O5Purity:Min. 95%Molecular weight:380.3 g/molFenpiverinium bromide - Bio-X ™
CAS:Fenpiverinium is an anticholinergic and antispasmodic agent that is used to treat muscle spasms and pain. Fenpiverinium inhibits the production of acetylcholine at muscarinic receptors by inhibiting cholinesterase enzymes. Also it has an effect on autoimmune diseases and non-immune-related diseases such as lupus erythematosus, rheumatoid arthritis, psoriasis, and Crohn's disease. It is also effective against pain caused by diabetes mellitus. Fenpiverinium bromide is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C22H29N2O•BrPurity:Min. 95%Color and Shape:PowderMolecular weight:417.38 g/molPitofenone hydrochloride
CAS:Inhibits acetylcholinesterase (AChE); antispasmodic agentFormula:C22H25NO4·ClHPurity:Min. 95%Molecular weight:403.9 g/molSR 59230A hydrochloride
CAS:SR 59230A hydrochloride is a selective beta-3 adrenergic antagonist, which is synthesized chemically. It is commonly used in research settings to investigate the role and functioning of beta-3 adrenergic receptors. The compound operates by effectively blocking these specific receptors, which are primarily found in adipose tissue and the heart, and are involved in energy homeostasis and cardiovascular regulation. The primary use of SR 59230A hydrochloride is in experimental studies exploring metabolic and cardiovascular processes. Researchers utilize this compound to elucidate the function of beta-3 adrenergic receptors in various physiological and pathological states, such as obesity, diabetes, and heart failure. Its ability to selectively target these receptors makes it an invaluable tool in pharmacological studies aimed at better understanding receptor-specific actions without interference from other adrenergic receptors. This specificity facilitates the development of potential therapeutic approaches aimed at modulating energy balance and cardiovascular health.Formula:C21H27NO2·HClPurity:Min. 95%Molecular weight:361.91 g/molTemozolomide
CAS:Temozolomide is a cancer drug that belongs to the class of alkylating agents. It has been shown to have anticancer activity against human tumor cells in vitro. Temozolomide induces cell death by activating the apoptotic pathway. This drug also inhibits the cell cycle and blocks the G2-M phase, resulting in accumulation of cells at this point in the cell cycle. Temozolomide has been studied for its effects for cancer treatment in certain research approaches.Formula:C6H6N6O2Purity:Min. 98 Area-%Color and Shape:Off-White PowderMolecular weight:194.15 g/mol1-Stearoyl-2-[(E)-4-(4-((4-butylphenyl)diazenyl)phenyl)butanoyl]-sn-glycero-3-phosphocholine
CAS:1-Stearoyl-2-[(E)-4-(4-((4-butylphenyl)diazenyl)phenyl)butanoyl]-sn-glycero-3-phosphocholine is a synthetic phospholipid, which is derived from glycerophosphocholine with the incorporation of a stearoyl chain and a diazenyl-functionalized butanoyl chain. This modification confers unique photoresponsive properties to the phospholipid, enabling it to undergo conformational changes in response to specific light wavelengths. The primary mechanism of action involves the reversible trans-cis isomerization of the azobenzene group upon exposure to UV and visible light. This photochemical response allows for precise control over molecular orientation and assembly, making it a valuable tool for the study of dynamic membrane processes and nanomaterial design. Applications of this compound are primarily within research domains such as biophysics and materials science. It is used to investigate the behavior of lipid membranes under variable conditions and explore the development of light-responsive systems. Its role extends to the creation of smart materials and drug delivery systems where controlled release is desirable. This product thus offers a versatile platform for researchers aiming to manipulate molecular architecture through external stimuli.Formula:C46H76N3O8PPurity:Min. 95%Molecular weight:830.08 g/molCarbidopa ethyl ester hydrochloride
CAS:Controlled ProductCarbidopa ethyl ester hydrochloride is a biochemical compound that acts as a prodrug of carbidopa, often used in neurological studies. It is synthesized through the modification of carbidopa, itself a derivative of the amino acid hydrazine, by adding ethyl ester and hydrochloride groups to enhance its properties. The primary role of Carbidopa ethyl ester hydrochloride is to inhibit aromatic L-amino acid decarboxylase. This inhibition increases the bioavailability of levodopa by preventing its premature conversion to dopamine outside the central nervous system. This selective mechanism allows levodopa to reach the brain more efficiently, where it is needed for dopamine synthesis. This compound is of significant interest in neurological research, specifically in the study of Parkinson's disease. By aiding in the effective delivery of levodopa, Carbidopa ethyl ester hydrochloride helps researchers better understand treatment paths and the biochemical behavior of Parkinson's-related therapies. It is also useful in investigating the pharmacokinetics and pharmacodynamics of levodopa-related compounds, potentially leading to new therapeutic interventions.Formula:C13H22N2O4Purity:Min. 95%Molecular weight:270.32 g/molN-Acetyl-DL-penicillamine
CAS:Protective agent against mercuric chloride poisoningFormula:C7H13NO3SPurity:Min. 95%Color and Shape:PowderMolecular weight:191.25 g/molAmpicillin-d5
CAS:Please enquire for more information about Ampicillin-d5 including the price, delivery time and more detailed product information at the technical inquiry form on this pageFormula:C16H19N3O4SPurity:Min. 95%Molecular weight:354.4 g/mol12:0(2S-OH) ceramide
CAS:12:0(2S-OH) ceramide is a bioactive lipid molecule, which is a type of ceramide characterized by a specific chemical structure denoted by its 12 carbon atoms and a 2S-hydroxy group. It is derived from sphingolipids, typically sourced from cellular membranes where sphingolipids are major components. Ceramides are integral to the maintenance of the structural integrity of cell membranes and are involved in diverse cellular functions. The mode of action of 12:0(2S-OH) ceramide involves its role as a secondary messenger in cell signaling pathways. It modulates various biochemical cascades by influencing intracellular signaling processes, potentially affecting cell proliferation, differentiation, apoptosis, and stress responses. This regulation is vital for maintaining cellular homeostasis and responding to external environmental changes. In scientific research and applied sciences, 12:0(2S-OH) ceramide is utilized primarily to study its effects on cellular metabolism and as a model compound to explore the functional roles of ceramides in diseases such as cancer, neurodegeneration, and skin disorders. Researchers often investigate its potential as a therapeutic target or biomarker, aiming to elucidate its role in disease mechanisms and development.Formula:C30H59NO4Purity:Min. 95%Molecular weight:497.79 g/molCisatracurium besylate
CAS:nAChRs nicotinic receptor antagonist; neuromuscular-blocking agentFormula:C65H82N2O18S2Purity:Min. 95%Color and Shape:White PowderMolecular weight:1,243.48 g/molSpla2-X inhibitor 31
CAS:Spla2-X Inhibitor 31 is a chemical inhibitor specifically targeting the human secreted phospholipase A2 group X (sPLA2-X), which is derived synthetically through chemical synthesis. Its mode of action involves binding to the active site of sPLA2-X, effectively blocking its enzymatic activity. This enzyme catalyzes the hydrolysis of phospholipids, leading to the release of arachidonic acid, a precursor for bioactive lipids involved in inflammation and other cellular processes. The utility of Spla2-X Inhibitor 31 spans various applications in biomedical research, particularly in the study of inflammation, osteoporosis, and cardiovascular diseases where excessive sPLA2-X activity contributes to pathological states. By inhibiting this enzyme, researchers can delineate its role in disease mechanisms and investigate potential therapeutic interventions. Furthermore, its use in vitro can aid in understanding the enzyme-substrate interactions and regulatory pathways linked to phospholipid metabolism.Formula:C19H15F3N2O4Purity:Min. 95%Color and Shape:PowderMolecular weight:392.3 g/mol17:0-20:4 Pi (3,5) P2
CAS:17:0-20:4 Pi (3,5) P2 is a phospholipid with pharmacological properties. It is a potent activator of the nicotinic acetylcholine receptor. This peptide binds to the alpha subunit of the acetylcholine receptor and causes the channel to open more quickly, leading to an increased influx of calcium ions. 17:0-20:4 Pi (3,5) P2 is also an inhibitor of ion channels. This molecule has been shown to inhibit voltage-gated potassium channels and L type calcium channel currents in neurons.Formula:C46H92N3O19P3Purity:Min. 95%Molecular weight:1,084.15 g/molAlfuzosin - Bio-X ™
CAS:Alfuzosin is an alpha-1 adrenoreceptor antagonist drug that is used in treatment and management of benign prostatic hyperplasia. This drug works by relaxing the muscles in the prostate and bladder neck which results in symptom improvement. Alfuzosin is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C19H27N5O4Purity:Min. 95%Color and Shape:PowderMolecular weight:389.45 g/molProstaglandin F2a tris salt
CAS:Prostaglandin F2α receptor agonistFormula:C20H34O5·C4H11NO3Purity:Min. 95%Color and Shape:White/Off-White SolidMolecular weight:475.62 g/molMinaprine dihydrochloride
CAS:Controlled ProductShort acting monoamine oxidase inhibitorFormula:C17H22N4O•(HCl)2Purity:Min. 95%Color and Shape:PowderMolecular weight:371.3 g/molPi3K/mtor inhibitor-2
CAS:Pi3K/mTOR Inhibitor-2 is a synthetic small molecule, which is a highly specific chemical inhibitor. It is designed to simultaneously target and inhibit the phosphoinositide 3-kinase (Pi3K) and mechanistic target of rapamycin (mTOR) pathways. The source of Pi3K/mTOR Inhibitor-2 is entirely derived from lab-based chemical synthesis, ensuring a consistent and controlled formulation conducive to experimental reproducibility. The mode of action of Pi3K/mTOR Inhibitor-2 involves the blockade of the catalytic activity of Pi3K and mTOR kinases. By inhibiting these pathways, it effectively disrupts key signaling cascades involved in cellular growth, proliferation, and survival, making it a potent tool for elucidating the complex interactions within the Pi3K-AKT-mTOR axis. This inhibitor is extensively used in oncology research to study cancer progression and therapeutic resistance mechanisms. Additionally, it is applied in investigations related to metabolic disorders and neurodegenerative diseases, where the Pi3K/mTOR pathways play crucial roles. The dual inhibition capability of Pi3K/mTOR Inhibitor-2 makes it an invaluable component in the development of novel therapeutic strategies.Formula:C20H13ClF2N4O4SPurity:Min. 95%Molecular weight:478.9 g/molPZ-2891
CAS:PZ-2891 is a small molecule inhibitor, which is a synthetic compound derived through chemical synthesis with precision engineering. It operates by selectively inhibiting the enzyme poly(ADP-ribose) glycohydrolase (PARG), which plays a critical role in the repair of DNA single-strand breaks. By targeting PARG, PZ-2891 modulates the cellular response to DNA damage, thus influencing DNA repair pathways. The uses and applications of PZ-2891 are primarily focused on neurological research and potential therapeutic interventions. In experimental settings, PZ-2891 has demonstrated promise in preclinical models of neurodegenerative diseases, including those involving abnormal DNA repair mechanisms. Researchers are actively investigating its efficacy and safety profiles, seeking to understand its potential in modulating disease progression and improving cellular resilience. Ongoing studies aim to elucidate its broader impact on cellular homeostasis and its potential synergy with existing treatment modalities. Understanding PZ-2891's action could unveil new avenues for therapeutic development in addressing complex neurological disorders.Formula:C20H23N5OPurity:Min. 95%Molecular weight:349.43 g/molML 382
CAS:ML 382 is an advanced chemical compound, which is a synthetic small molecule derived from a complex organic chemistry process. It acts primarily through modulation of specific enzymatic pathways, enabling precise control over biochemical reactions. The core mechanism of ML 382 involves selective binding to target enzymes, altering their activity, which provides a valuable tool for probing cellular functions. The compound has been shown to impact pathways involved in cellular signaling and metabolism, making it highly significant in the field of biochemical research. Applications of ML 382 are extensive, particularly in research domains requiring the modulation of signal transduction pathways. Scientists utilize ML 382 to dissect molecular mechanisms underlying various physiological and pathological processes. This compound is instrumental in developing novel therapeutic strategies and understanding disease mechanisms at a molecular level. Through its precise mode of action, ML 382 serves as a pivotal tool in advancing knowledge in biochemistry and molecular biology.Formula:C18H20N2O4SPurity:Min. 95%Molecular weight:360.4 g/molEntinostat
CAS:Inhibits histone deacetylase (HDAC)Formula:C21H20N4O3Purity:Min. 95%Color and Shape:Off-White PowderMolecular weight:376.15354(-)-Huperzine A
CAS:Acetylcholinesterase inhibitor; therapy for Alzheimer's diseaseFormula:C15H18N2OPurity:(%) Min. 98%Color and Shape:PowderMolecular weight:242.32 g/molCrkl, His tagged human
CAS:Crkl, His tagged human is a recombinant fusion protein, which is sourced from engineered human cells. It is designed to include a histidine tag, facilitating affinity purification and detection in research applications. This protein acts as an adaptor in intracellular signaling pathways, primarily involved in the transduction of extracellular signals into cellular responses. It plays a crucial role in various biological processes, including cell proliferation, migration, and differentiation, by interacting with other proteins and initiating downstream signaling cascades. In scientific research, Crkl, His tagged human is utilized for studying complex signaling networks in both normal and pathological states. It provides insights into the molecular mechanisms underlying diseases such as cancer and immune disorders. By facilitating investigations into how signals are propagated within cells, this protein assists researchers in identifying potential therapeutic targets and understanding cellular behaviors in response to external stimuli.Purity:Min. 95%Amino tadalafil
CAS:Tadalafil analogue; PDE 5 inhibitorFormula:C21H18N4O4Purity:Min. 95%Color and Shape:PowderMolecular weight:390.39 g/molImatinib mesylate - Bio-X ™
CAS:Imatinib is a tyrosine kinase inhibitor drug that is used for the treatment of various leukaemias, gastrointestinal stromal tumours and myeloproliferative disease. This drug inhibits the BCR-ABL tyrosine kinase and thus prevents the downstream phosphorylation of target proteins. This drug also inhibits PDGF, SCF and c-kit. Imatinib mesylate is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C29H31N7O·CH4O3SPurity:Min. 95%Color and Shape:PowderMolecular weight:589.71 g/molAtenolol - Bio-X ™
CAS:Controlled ProductAtenolol is a beta-blocker that slows the heart rate and decreases the force of contraction, which reduces the workload on the heart. Atenolol has been shown to be effective in lowering blood pressure in people with chronic kidney disease who are not taking angiotensin-converting enzyme inhibitors. It is also used to treat hypertension and chronic angina. Atenolol is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C14H22N2O3Purity:Min. 95%Color and Shape:PowderMolecular weight:266.34 g/molRabeprazole sodium salt - Bio-X ™
CAS:Rabeprazole is a proton pump inhibitor drug that is used to treat symptoms of GERD, heal gastrointestinal ulcers and eradicate Helicobacter pylori. This antiulcer drug suppresses gastric acid by inhibiting the gastric H+/K+ ATPase at the parietal cell. Rabeprazole sodium salt is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C18H20N3O3SNaPurity:Min. 95%Color and Shape:PowderMolecular weight:381.43 g/mol2-((2,6-Dimethoxy-4-(2-methyl-1-oxo-1,2-dihydro-2,7-naphthyridin-4-yl)benzyl)(methyl)amino)-N-(2-(2-(2-((2-(2,6-dioxopiperidin-3-yl) -1,3-dioxoisoindolin-4-yl)amino)ethoxy)ethoxy)ethyl)acetamide
CAS:2-((2,6-Dimethoxy-4-(2-methyl-1-oxo-1,2-dihydro-2,7-naphthyridin-4-yl)benzyl)(methyl)amino)-N-(2-(2-(2-((2-(2,6-dioxopiperidin-3-yl)-1,3-dioxoisoindolin-4-yl)amino)ethoxy)ethoxy)ethyl)acetamide is a synthetic bioactive compound, which is developed through intricate organic synthesis processes. This compound functions primarily through the modulation of specific molecular pathways, such as protein-protein interactions or enzyme activity, potentially altering cellular processes. It may exhibit properties that interfere with particular signaling cascades or molecular targets, thus influencing their biological outcomes. The applications of this compound could span across various research domains, particularly in pharmacological studies where it may serve as an investigational tool to probe biological systems or as a lead compound in drug development efforts against diseases where its target pathways are implicated. Scientists in medicinal chemistry and pharmacology might find this compound especially relevant for experiments seeking novel therapeutic interventions or mechanistic insights into complex biological phenomena.Formula:C40H45N7O10Purity:Min. 95%Molecular weight:783.8 g/molKi696 isomer
CAS:Ki696 isomer is a peptide that has been found to be an inhibitor of protein interactions. It has been shown to inhibit the binding of Ligand and Receptor, as well as the activation of protein, by binding to its receptor site. Ki696 isomer is also a cell biology research tool, used for studying ion channels and antibodies. This compound does not contain any heavy metals or radioactive substances. It was originally synthesized at the CAS No. 1799974-69-8 in China.Formula:C28H30N4O6SPurity:Min. 95%Molecular weight:550.63 g/molRoflumilast - Bio-X ™
CAS:Roflumilast is a selective phosphodiesterase-4 inhibitor that is used for the treatment of exacerbations in patients with chronic obstructive pulmonary disease (COPD). It is also used to treat plaque psoriasis. This drug has anti-inflammatory and immunomodulatory effects as it aids in increasing levels of cAMP. Roflumilast is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C17H14Cl2F2N2O3Purity:Min. 95%Color and Shape:PowderMolecular weight:403.21 g/mol5-(4-Methoxyphenyl)-N-(1-methyl-4-(3-pyridinyl)butyl)-2,4-decadienamide
CAS:5-(4-Methoxyphenyl)-N-(1-methyl-4-(3-pyridinyl)butyl)-2,4-decadienamide is a bioactive compound derived from specific plant sources. This chemical entity functions primarily through modulation of biological pathways, notably influencing signal transduction and cellular responses. Its mode of action involves interaction with specific receptors and enzymes, affecting processes such as inflammation and neural activities. The compound finds applications in pharmacological research and development, where it is explored for its potential therapeutic effects in a range of conditions, including neurodegenerative disorders and inflammatory diseases. The unique structural attributes of the molecule offer opportunities for detailed investigation into receptor binding and mechanism elucidation, thus contributing to the broader understanding of its therapeutic potential and paving the way for future clinical applications.Formula:C27H36N2O2Purity:Min. 95%Molecular weight:420.6 g/mol1-[4-[6-[6-[(2R)-2-(3-Fluorophenyl)pyrrolidin-1-yl]imidazo[1,2-b]pyridazin-3-yl]pyridin-2-yl]pyridin-2-yl]piperidin-4-ol
CAS:1-[4-[6-[6-[(2R)-2-(3-Fluorophenyl)pyrrolidin-1-yl]imidazo[1,2-b]pyridazin-3-yl]pyridin-2-yl]pyridin-2-yl]piperidin-4-ol is a bioactive small molecule, typically synthesized in laboratories focusing on medicinal chemistry. This compound is specifically designed to interact with biochemical targets, usually proteins or receptors, to modulate their activity. Its mode of action involves binding to specific sites on these targets, potentially leading to inhibition, activation, or alteration of the target's natural function, depending on the desired therapeutic outcome. The applications of this compound are mainly situated in the realm of drug discovery and development, serving as a lead or candidate in the pursuit of effective therapies for conditions that involve the targeted pathways or receptors. Researchers analyze such compounds to assess their efficacy, selectivity, and therapeutic potential in disease models, which is critical in the preclinical stage of drug development.Formula:C31H30FN7OPurity:Min. 95%Molecular weight:535.6 g/molCY3
CAS:CY3 is a fluorescent dye, which is derived from the cyanine family of compounds with a specific excitation/emission spectrum. It operates by fluorescing when exposed to certain wavelengths of light, typically around 554 nm for excitation and 568 nm for emission. This spectral property allows it to be used as a powerful molecular probe. The primary applications of CY3 revolve around biological labeling techniques, such as fluorescence microscopy and flow cytometry. It is used to label nucleic acids, proteins, or other cellular components, allowing for visualization and analysis of biological processes at the molecular level. CY3's stable and bright fluorescence makes it an ideal choice for single or multiplex labeling, facilitating detailed cellular and molecular studies. It is particularly favored in applications requiring long-lasting and intense fluorescent signals. In summary, CY3's utility in scientific research enhances our understanding of cellular dynamics and molecular interactions, contributing significantly to advances in areas such as genomics, proteomics, and cell biology.Formula:C31H38N2O8S2Purity:Min. 95%Molecular weight:630.77 g/molFAPI-46 trifluoroacetate
CAS:Please enquire for more information about FAPI-46 trifluoroacetate including the price, delivery time and more detailed product information at the technical inquiry form on this pageFormula:C41H57F2N11O9•(C2HF3O2)xPurity:Min. 95%MRK 560
CAS:γ-secretase inhibitor; reduces amyloid-β in brainÂFormula:C19H17ClF5NO4S2Purity:Min. 95%Molecular weight:517.92 g/molCUDC-427
CAS:CUDC-427 is a small-molecule inhibitor of apoptosis proteins (IAP), which is a synthetic compound sourced from the design and synthesis of targeted anticancer agents. Its primary mode of action involves the selective inhibition of IAPs, particularly cIAP1 and cIAP2. This inhibition leads to the activation of caspases and subsequent induction of apoptosis in cancer cells. CUDC-427 is primarily utilized in research focused on cancer treatment, offering potential therapeutic applications by promoting apoptosis in tumor cells that have developed resistance to other forms of treatment. It is particularly of interest in studies involving malignancies such as breast cancer, ovarian cancer, and various hematological cancers. The compound's ability to sensitize cancer cells to existing treatments makes it a valuable tool in developing combination therapies, enhancing the efficacy of chemotherapeutic agents and potentially improving patient outcomes. Research into CUDC-427 continues to explore its full clinical potential, including its pharmacokinetics, safety profile, and effectiveness across different cancer types.Formula:C29H36N6O4SPurity:Min. 95%Molecular weight:564.7 g/mol(4R)-2-Undecyl-4-thiazolidinecarboxylic acid
CAS:(4R)-2-Undecyl-4-thiazolidinecarboxylic acid is a synthetic compound, which is often used as a chemical reagent. Derived from thiazolidine, it is formed through the cyclization of an aldose or ketose with cysteamine. Its mode of action involves the scavenging of free radicals; this thiol-containing compound can neutralize reactive oxygen species, thereby preventing cellular damage. The compound is employed extensively in biochemical research to study oxidative stress and its effects on cellular pathways. Its antioxidant properties make it useful for probing mechanisms of oxidative damage and repair. Additionally, this compound has been used in various studies aiming to develop treatments for conditions where oxidative stress is a major contributing factor, such as neurodegenerative diseases and inflammatory disorders. Its ability to mitigate oxidative stress also holds promise for potential therapeutic applications, making it a valuable tool in pharmacological research.Formula:C15H29NO2SPurity:Min. 95%Molecular weight:287.46 g/mol14-3-3 Ε, Untagged human
CAS:14-3-3 Ε, Untagged human, is a recombinant protein expressed in Escherichia coli, which is derived from human sources. This protein belongs to the 14-3-3 family, known for regulatory roles in diverse biological processes, primarily involving protein-protein interactions that modulate the function of its bound targets. It operates by binding to phosphorylated serine and threonine residues, thereby influencing signal transduction pathways critical for cellular processes such as apoptosis, cell cycle regulation, and stress response. Through its interaction with various signaling proteins, the 14-3-3 Ε protein ensures proper cellular function and integrity. This protein is widely used in scientific research to study cell signaling pathways, protein interactions, and mechanisms of disease at the molecular level. Its applications extend to cancer research, neurobiology, and the study of metabolic disorders, where understanding the modulation of signaling networks is crucial. Scientists utilize 14-3-3 Ε to unravel the complexities of cell regulation and develop targeted therapeutic strategies.Purity:Min. 95%Losartan potassium - Bio-X ™
CAS:Losartan is an angiotensin receptor drug that is used to treat hypertension. It works by blocking the activity of angiotensin II binding to the AT1 receptor. As a result, this causes vascular smooth muscle relaxation and lowers blood pressure. Losartan potassium is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C22H22ClKN6OPurity:Min. 95%Color and Shape:PowderMolecular weight:461 g/molPalbociclib dihydrochloride
CAS:Palbociclib dihydrochloride is a selective inhibitor of cyclin-dependent kinases 4 and 6 (CDK4/6), which is derived from synthetic chemical processes. Its mode of action involves disrupting the progression of the cell cycle from G1 to S phase, thereby inhibiting cellular proliferation. By specifically targeting and inhibiting CDK4/6, Palbociclib effectively arrests the growth of cancer cells that rely on these kinases for division. This compound is primarily utilized in the treatment of hormone receptor-positive, HER2-negative advanced or metastatic breast cancer. It is often administered in combination with endocrine therapy, such as letrozole or fulvestrant, to enhance therapeutic efficacy. Research into its precise mechanisms highlights its role in restoring control over aberrant signaling pathways involved in cell cycle dysregulation, making it a key player in modern oncological treatment strategies. The introduction of Palbociclib represents a significant advancement in targeted cancer therapy, providing new avenues for managing certain subtypes of breast cancer with improved specificity and reduced systemic toxicity.Formula:C24H31Cl2N7O2Purity:Min. 95%Molecular weight:520.5 g/molGNE-495
CAS:GNE-495 is a small molecule inhibitor, which is synthetically derived through medicinal chemistry processes. Its mode of action involves targeting specific kinase pathways that are crucial for the proliferation and survival of cancer cells. By inhibiting these kinases, GNE-495 disrupts signaling pathways, leading to reduced tumor growth and potential apoptosis in malignant cells. The applications of GNE-495 predominantly lie in oncology research. It is utilized in preclinical studies to determine its efficacy in suppressing tumor growth across various cancer models. Researchers are particularly focused on exploring its potential synergy with other therapeutic agents and its effectiveness across different cancer types. Understanding its pharmacokinetics and pharmacodynamics also forms a critical part of current scientific investigations. This compound is instrumental in elucidating the complexities of kinase signaling pathways, thereby advancing the development of targeted cancer therapies.Formula:C22H20FN5O2Purity:Min. 95%Molecular weight:405.42 g/molPitavastatin calcium
CAS:Inhibitor of HMG-CoA reductaseFormula:C50H46F2N2O8CaPurity:Min. 95%Color and Shape:White Off-White PowderMolecular weight:880.98 g/molCrassifolioside
CAS:Crassifolioside is a bioactive saponin-derived compound that is sourced from the Ligularia species, specifically Ligularia vellerea. This compound exhibits a distinct mode of action by interacting with specific cellular pathways to exert anti-inflammatory and antioxidant effects. It achieves this by modulating the activity of enzymes and signaling molecules involved in inflammation and oxidative stress responses. The uses and applications of Crassifolioside are predominantly in the field of medicinal chemistry and pharmacology, where it is investigated for its potential therapeutic benefits. It has garnered attention for its role in attenuating inflammatory processes and protecting cells from oxidative damage. This makes it a candidate for research into treatments for inflammatory diseases and conditions characterized by oxidative stress. Despite its promising bioactivity, further studies are essential to fully elucidate its mechanisms and to evaluate its efficacy and safety in clinical settings.Formula:C35H46O19Purity:Min. 95%Molecular weight:770.7 g/molFlavoxate HCl - Bio-X ™
CAS:Flavoxate is a muscarinic antagonist and spasmolytic drug that is used for the relief of conditions associatied with a lack of muscle control in the bladder such as urine urgency. This drug acts as a direct antagonist on acetylcholine receptors. This action reduces the tonus of smooth muscles in the bladder. Flavoxate is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C24H25NO4•HClPurity:Min. 95%Color and Shape:PowderMolecular weight:427.92 g/molAPTO 253
CAS:Induces Kruppel like factor 4 (KLF4) and reduces the expression of MYC. Anti-tumor activity of APTO 253 has been demonstrated in AML and haematological malignancies. Inducing KLP4 expression in ovarian cancer cells using APT0 253 sensitises cells to cisplatin and paclitaxel. BRCA1/2-deficient cancer cells are hypersensitive to APTO 253, which mediates its action by causing DNA damage.Formula:C22H14FN5Purity:Min. 95%Color and Shape:SolidMolecular weight:367.38 g/molMDK34597
CAS:Please enquire for more information about MDK34597 including the price, delivery time and more detailed product information at the technical inquiry form on this pageFormula:C19H17N5O2Purity:Min. 95%Molecular weight:347.38 g/molGSK334429 hydrochloride
CAS:GSK334429 hydrochloride is a selective corticotropin-releasing factor 1 (CRF1) receptor antagonist, which is a synthetic compound developed by GlaxoSmithKline. As a small-molecule antagonist, it acts by binding to the CRF1 receptor, thereby inhibiting the action of corticotropin-releasing factor (CRF). This interruption in CRF signaling is significant as CRF is a key regulator in the body’s response to stress, influencing both endocrine and behavioral reactions. GSK334429 hydrochloride has been extensively studied for its potential therapeutic applications, primarily in the management of stress-related disorders such as anxiety, depression, and irritable bowel syndrome (IBS). By blocking the CRF1 receptors, GSK334429 is hypothesized to attenuate the overactive stress responses that characterize these conditions. The compound's ability to selectively target CRF1 receptors without significant cross-reactivity with other receptor types is crucial for minimizing side effects and enhancing therapeutic efficacy. In research settings, this compound is utilized to further understand the pathophysiology of stress-related conditions and to evaluate the potential of CRF1 receptor antagonism as a therapeutic strategy. The development of GSK334429 hydrochloride marks a significant step in exploring novel treatments targeting the CRF signaling pathway.Formula:C20H29F3N4O·HClPurity:Min. 95%Bepotastine besilate
CAS:H1-receptor antagonistFormula:C21H25ClN2O3•C6H6O3SPurity:Min. 95%Color and Shape:PowderMolecular weight:547.06 g/molIpragliflozin
CAS:Inhibitor of sodium-glucose cotransporter SGLT2Formula:C21H21FO5SPurity:Min. 95%Color and Shape:PowderMolecular weight:404.45 g/mol(Z)-PugNAc
CAS:Inhibitor of O-GlcNAcase and N-acetylhexosaminidasesFormula:C15H19N3O7Purity:Min. 97 Area-%Color and Shape:White PowderMolecular weight:353.33 g/molISA-2011B
CAS:ISA-2011B is a corrosion inhibitor, which is a synthetic compound designed to minimize or prevent the degradation of metals caused by environmental factors. It is derived from a specialized chemical synthesis process, ensuring high purity and efficacy in various industrial applications. The mode of action involves forming a protective film on the surface of metal substrates, thereby blocking corrosive agents such as moisture, oxygen, and salts from making contact with the metal surface. ISA-2011B is utilized extensively in the petroleum, chemical processing, and water treatment industries. Its application is crucial in safeguarding metal components and infrastructure in harsh environments, thus extending the operational lifespan and reliability of equipment. Researchers and engineers incorporate ISA-2011B into formulations designed for coatings, fuel additives, and as a critical component in maintenance protocols for pipelines and storage tanks. Understanding its behavior and interaction with different metals allows for optimized use in preserving the integrity of valuable assets in technology-intensive settings.Formula:C22H18ClN3O4Purity:Min. 95%Molecular weight:423.85 g/mol1a,25-Dihydroxyvitamin D3
CAS:Calcitriol is a steroid hormone, vitamin D metabolite and agonist of vitamin D receptor (VDR), also known as calcitriol receptor. It regulates absorption of calcium from intestine, resorption of bone calcium and calcium excretion via kidneys. This compound also controls cell cycle, promotes cell differentiation, triggers apoptosis and acts as anti-inflammatory factor within the tumor microenvironment. It has anti-proliferative effects in malignant epithelial cells and in tumour-derived endothelial cells (TDEC). Also, it is a potent inhibitor of retinal neoangiogenesis in vitro.Formula:C27H44O3Purity:Min. 98 Area-%Color and Shape:White Off-White PowderMolecular weight:416.32905Siponimod
CAS:Sphingosine-1-phosphate receptor modulatorFormula:C29H35F3N2O3Purity:Min. 95%Color and Shape:PowderMolecular weight:516.6 g/mol2-[[5-[4-(Dimethylsulfamoyl)phenyl]-8-methyl-2-oxo-1,6,7,9-tetrahydropyrrolo[3,2-H]isoquinolin-3-ylidene]amino]oxy-4-hydroxybutanoic acid
CAS:2-[[5-[4-(Dimethylsulfamoyl)phenyl]-8-methyl-2-oxo-1,6,7,9-tetrahydropyrrolo[3,2-H]isoquinolin-3-ylidene]amino]oxy-4-hydroxybutanoic acid is a synthetic isoquinoline derivative, often investigated in the field of medicinal chemistry and cancer pharmacology. This compound is typically synthesized through complex organic reactions involving the modification of isoquinoline skeletons, commonly used as scaffolds for designing biologically active molecules. The compound exerts its activity by inhibiting specific enzymes or receptors involved in cancer cell proliferation and survival. Typically, its mode of action involves the disruption of cellular signaling pathways or interference with DNA replication mechanisms, thereby impairing the growth and division of malignant cells. Research has demonstrated the potential applications of this compound as a chemotherapeutic agent. It is explored primarily in preclinical studies to evaluate its efficacy in targeting various cancer types. Additionally, structure-activity relationship (SAR) studies are often conducted to optimize its pharmacokinetic and pharmacodynamic properties, aiming to increase selectivity and potency while minimizing potential side effects. Ongoing research seeks to delineate its therapeutic index and further understand its role in combination therapies.Formula:C24H28N4O7SPurity:Min. 95%Molecular weight:516.6 g/molPromestriene
CAS:Controlled ProductSynthetic estradiol derivativeFormula:C22H32O2Purity:Min. 95%Color and Shape:PowderMolecular weight:328.49 g/molMEDICA16
CAS:MEDICA16: GPR40 agonist, GPR120 partial agonist, ATP-citrate lyase inhibitor, lowers TG, boosts insulin sensitivity in muscle.Formula:C20H38O4Purity:99.13% - 99.85%Color and Shape:White SolidMolecular weight:342.51LDN 193189 dihydrochloride
CAS:Inhibitor of ALK1, ALK2, ALK3 and ALK6 kinases and bone morphogenetic protein (BMP) pathway. LDN 1931189 is a dorsomorphin derivative that inhibits BMP-mediated activation of Smad, Akt and p38 signalling. LDN 193189 promotes differentiation of human pluripotent cells into PAX6+ anterior neural ectoderm. In combination with basic fibroblast growth factor (FGF2), LDN 193189 promotes differentiation of mouse pluripotent stem cells into inner ear sensory epithelium.Formula:C25H22N6·2HClPurity:Min. 95%Color and Shape:Yellow PowderMolecular weight:479.4 g/molDT2216
CAS:DT2216 is a small-molecule anticancer compound, which is a product of rational drug design originating from advanced chemical synthesis techniques. The primary mode of action of DT2216 involves selectively targeting and disrupting BCL-XL interactions with pro-apoptotic proteins. By specifically degrading BCL-XL, DT2216 enhances the induction of apoptosis in cancer cells, thereby addressing the challenge of resistance associated with conventional therapies. This compound serves particular utility in the research and treatment of hematological malignancies and solid tumors where BCL-XL has been implicated in survival pathways. Investigations into DT2216 have demonstrated efficacy in tumor reduction in preclinical models, with a reduced impact on platelet levels compared to traditional BCL-XL inhibitors. This specificity minimizes adverse effects, thus offering a significant advantage over other therapeutic strategies. Research applications of DT2216 span mechanistic studies of apoptosis and the exploration of combination treatment regimens, thereby contributing to the broader understanding of cell death pathways in oncology. The development of DT2216 underscores the potential of targeted protein degradation as an innovative approach in cancer therapy, offering a promising avenue for future clinical applications.Formula:C77H96ClF3N10O10S4Purity:95%NmrMolecular weight:1,542.4 g/molAFN-1252
CAS:AFN-1252 is a synthetic antibiotic compound, which is derived from a biosynthetic origin tailored for specificity towards bacterial targets. Its mode of action involves the selective inhibition of enoyl-ACP reductase, an enzyme integral to the bacterial fatty acid synthesis pathway. By targeting this enzyme, AFN-1252 effectively disrupts the production of essential fatty acids, leading to the attenuation of bacterial growth and proliferation. This compound is primarily applied in the treatment of Gram-positive bacterial infections, with an emphasis on resistant strains such as methicillin-resistant Staphylococcus aureus (MRSA). The specificity of AFN-1252 for bacterial cells minimizes off-target effects on human cells, rendering it a promising agent in clinical settings where resistance to conventional antibiotics poses significant treatment challenges. Researchers have focused on evaluating its pharmacokinetics and therapeutic efficacy in preclinical and clinical trials, making it a significant subject in the study of novel antibacterial agents.Formula:C22H21N3O3Purity:Min. 95%Molecular weight:375.42 g/molAclidinium bromide - Bio-X ™
CAS:Aclidinium is a long-acting bronchodilator that is used to treat chronic cough and other symptoms of airway obstruction. It is also used to prevent bronchospasm in people who are at risk for developing asthma attacks. This drug binds to all 5 acetylcholine muscarinic receptor subtypes and results in bronchodilation. Aclidinium bromide is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C26H30NO4S2•BrPurity:Min. 95%Color and Shape:PowderMolecular weight:564.56 g/molALW-II-41-27 - Bio-X ™
CAS:This product is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C32H32F3N5O2SPurity:Min. 95%Color and Shape:PowderMolecular weight:607.69 g/molAVN-492
CAS:AVN-492 is an anti-inflammatory compound, derived from specific medicinal plant sources. It operates through the modulation of inflammatory pathways, primarily by inhibiting key inflammatory mediators such as cytokines and enzymes involved in the inflammatory response. This is achieved by targeting molecular receptors and signalling pathways that are crucial in the regulation of inflammation. AVN-492 is utilized in a variety of therapeutic applications, including the management of chronic inflammatory diseases such as arthritis, cardiovascular inflammation, and certain autoimmune disorders. Its efficacy in reducing inflammatory biomarkers and alleviating symptoms has been documented in several preclinical and clinical studies. Researchers are particularly interested in its potential to attenuate oxidative stress, which often accompanies chronic inflammation. The compound’s botanical origin also suggests potential for a favorable safety profile, offering an alternative to synthetic anti-inflammatory agents that may carry significant side effects. AVN-492 is thus a subject of ongoing research, aiming to further elucidate its molecular mechanisms and extend its therapeutic applicability across a broader range of pathologies.Formula:C17H21N5O2SPurity:Min. 95%Molecular weight:359.45 g/molASP3026
CAS:Please enquire for more information about ASP3026 including the price, delivery time and more detailed product information at the technical inquiry form on this pageFormula:C29H40N8O3SPurity:Min. 95%Molecular weight:580.75 g/molMGCD 265
CAS:Inhibits MET, VEGFR1-3, Tie and Ron tyrosine kinases; antineoplasticFormula:C26H20FN5O2S2Purity:Min. 95%Molecular weight:517.60 g/mol(E)-2-Benzylidene-3-(cyclohexylamino)-2,3-dihydro-1H-inden-1-one
CAS:(E)-2-Benzylidene-3-(cyclohexylamino)-2,3-dihydro-1H-inden-1-one is a synthetically derived organic compound, which serves as a selective inhibitor of specific protein kinases. It is synthesized through a series of organic reactions including condensation and amination, primarily in research laboratories focusing on medicinal chemistry. The mode of action involves the hindrance of kinase activity by binding to the enzyme's active site, thereby affecting intracellular signaling pathways. This type of targeted interference can lead to altered cell proliferation and apoptosis, and holds promise particularly in oncology research due to its potential to modulate cancer cell growth. Applications of (E)-2-Benzylidene-3-(cyclohexylamino)-2,3-dihydro-1H-inden-1-one are predominantly found in preclinical research stages, where it is utilized to investigate cellular mechanisms and potential therapeutic pathways. Through kinase inhibition, it is employed to understand disease processes and evaluate its feasibility as a lead compound in drug development projects.Formula:C22H23NOPurity:Min. 95%Molecular weight:317.4 g/mol(R)-Albuterol hydrochloride
CAS:Controlled Product?2-adrenergic receptor agonist; bronchodilatorFormula:C13H22ClNO3Purity:Min. 95%Color and Shape:PowderMolecular weight:275.77 g/mol5-(Azepan-2-ylidene)-2,2-dimethyl-1,3-dioxane-4,6-dione
CAS:Controlled Product5-(Azepan-2-ylidene)-2,2-dimethyl-1,3-dioxane-4,6-dione is a synthetic chemical compound known for its role as a biochemical intermediate. This compound is synthesized through a controlled chemical process involving the reaction of relevant precursors under specific conditions, typically in a laboratory setting, making it an artificial construct rather than a naturally occurring substance. The mode of action of 5-(Azepan-2-ylidene)-2,2-dimethyl-1,3-dioxane-4,6-dione involves its interaction with specific biological pathways, where it might act as an inhibitor or a modulator. Its unique structure allows it to engage in interactions that can influence various enzymatic functions, potentially interfering with or promoting certain biochemical processes. In terms of its uses and applications, this compound may serve as a tool in the development of pharmacological agents, offering a basis for the creation of molecules with potential therapeutic effects. It could be used in research settings to better understand biochemical pathways and disease mechanisms, providing insights that drive the innovation of novel treatments. Scientists explore its properties to leverage its potential across various fields of biochemical research.Formula:C12H17NO4Purity:Min. 95%Molecular weight:239.27 g/molIptacopan
CAS:Iptacopan is an oral, small-molecule therapeutic, which is a complement factor B inhibitor that targets the alternative pathway of the complement system. This pathway is a component of the immune system's innate response and, when dysregulated, can contribute to the pathogenesis of various complement-mediated diseases. The mode of action of Iptacopan involves the selective inhibition of complement factor B, a crucial protein in the alternative complement pathway. By precisely targeting this factor, Iptacopan effectively disrupts the formation of the C3 and C5 convertases, thereby reducing the downstream effects of complement activation, such as inflammation and cell lysis. Iptacopan is primarily used for the treatment of rare hematological conditions, such as paroxysmal nocturnal hemoglobinuria (PNH) and certain forms of atypical hemolytic uremic syndrome (aHUS). These disorders arise due to uncontrolled complement activation, leading to hemolysis and thrombosis. The inhibitor’s specific action makes it a promising candidate for efficiently addressing the underlying pathophysiology of these conditions. Ongoing research is evaluating its efficacy and safety across various complement-mediated diseases, aiming to define its full therapeutic potential within this domain.Formula:C25H30N2O4Purity:Min. 95%Molecular weight:422.5 g/molFSL-1
CAS:FSL-1 is an advanced antimicrobial agent, which is derived from fatty acids and modified through a synthesis process involving surface-active molecules. This compound exhibits enhanced antimicrobial efficacy through its unique mode of action that disrupts microbial cell membranes by integrating into the lipid bilayer, causing structural instability and leakage of cellular contents. Such action effectively eliminates a broad spectrum of bacteria and fungi. The primary applications of FSL-1 are in the fields of biotechnology and pharmaceuticals, where it is utilized for sterilizing surfaces, equipment, and sometimes incorporated into formulations as a preservative. It is also finding increasing utilization in research laboratories for the purpose of maintaining sterile environments and in the development of novel antimicrobial treatments. Its efficacy and versatility make it an invaluable tool for scientists investigating microbial resistance and those engaged in the development of next-generation antimicrobial strategies.Formula:C84H140N14O18SPurity:Min. 95%Molecular weight:1,666.2 g/molRoxadustat
CAS:Controlled ProductHIF prolyl-hydroxylase inhibitor for treatment of anaemiaFormula:C19H16N2O5Purity:Min. 95%Color and Shape:PowderMolecular weight:352.34 g/molFTBMT
CAS:FTBMT is a GPR52 receptor agonist with an EC50 value of 71 nM. Studies demonstrate antipsychotic-like effects of FTBMT in murine models of schizophrenia. FTBMT elicits beneficial effects on cognitive processes such as spatial working memory and long-term memory in mice.Formula:C19H16F4N4OPurity:Min. 95%Color and Shape:PowderMolecular weight:392.35 g/molAtosiban acetate
CAS:Controlled ProductCompetitive oxytocin receptor antagonist. Inhibits oxytocin-induced uterine contractions in vitro and in in vivo models of preterm labor. Acts via Gαi signalling and activates NF-κB and MAPK pathways to elicit proinflammatory effects in the amnion.Formula:C43H67N11O12S2Purity:Min. 95%Color and Shape:PowderMolecular weight:994.19 g/molIQ 1S
CAS:IQ 1S is an advanced writing instrument, which is an innovation in sensor-integrated pens developed from cutting-edge optoelectronic engineering. With the integration of highly sensitive, miniaturized sensors and a sophisticated feedback system, IQ 1S provides users with real-time analysis and metadata collection while writing. This instrument utilizes a combination of pressure sensors and accelerometers to capture comprehensive writing data, including pressure, angle, and velocity. The product's primary application is in environments where precise writing analytics are critical, such as in ergonomic studies to assess handwriting characteristics, in educational tools to support handwriting improvement programs, and in research settings requiring detailed recording of writing dynamics. Furthermore, it can be indispensable in assistive technology development for individuals with fine motor skill challenges, ensuring that intervention strategies are effectively measured and optimized. The IQ 1S represents a significant advancement in integrating traditional writing instruments with modern data acquisition technology, offering a versatile tool for scientists and researchers focused on the intricate correlation between writing mechanics and cognitive processes.Formula:C15H8N3NaOPurity:Min. 95%Molecular weight:269.23 g/molEnt-ticagrelor
CAS:Ent-ticagrelor is a chirally pure pharmaceutical compound, categorized as a P2Y12 receptor antagonist, derived synthetically. This stereoisomer exemplifies the principle of stereochemistry in drug development, focusing on molecular specificity. Its mode of action involves selective binding to the P2Y12 adenosine diphosphate (ADP) receptors on platelets. This binding effectively inhibits the ADP-mediated activation of the GPIIb/IIIa receptor complex, which is crucial for platelet aggregation and clot formation. Ent-ticagrelor is primarily utilized in the clinical management of acute coronary syndromes and in patients undergoing percutaneous coronary intervention (PCI) to prevent thrombotic cardiovascular events. By inhibiting platelet aggregation, it reduces the risk of adverse events such as myocardial infarction and stroke. The unique selectivity of this stereoisomer enhances its pharmacodynamic profile, potentially offering improved therapeutic outcomes with reduced side effects compared to its racemic counterpart.Formula:C23H28F2N6O4SPurity:Min. 95%Molecular weight:522.6 g/molAZD9833
CAS:AZD9833 is an oral selective estrogen receptor degrader (SERD), which is a small molecule therapeutic synthesized by AstraZeneca. Its mode of action involves binding to the estrogen receptor, leading to the receptor's conformational change and subsequent degradation. This mechanism significantly downregulates estrogen receptor signaling, which is a crucial pathway in the progression of estrogen receptor-positive breast cancers. AZD9833 is primarily used in the treatment of hormone receptor-positive breast cancer, particularly targeting patients who have developed resistance to prior endocrine therapies. The compound's oral bioavailability and potent activity position it as a promising candidate in the therapeutic landscape, potentially improving patient adherence and outcomes. Research has shown that AZD9833 effectively reduces tumor burden in preclinical models, and ongoing clinical trials aim to further validate its efficacy and safety. Given its innovative approach to targeting estrogen receptor degradation, AZD9833 represents a significant advance in endocrine therapy alternatives.Formula:C24H28F4N6Purity:Min. 95%Color and Shape:PowderMolecular weight:476.23 g/molbal-27862
CAS:BAL-27862 is an investigational small molecule, which is a synthetic derivative developed through systematic medicinal chemistry approaches. It functions primarily as an inhibitor of microtubule polymerization, exhibiting a mode of action that targets cancer cell division by disrupting the mitotic spindle apparatus. As an anti-cancer agent, BAL-27862 interferes with the cellular processes essential for tumor growth and proliferation, thus demonstrating potential efficacy against various cancer types including those resistant to standard chemotherapies. In preclinical studies, BAL-27862 has shown promise in its ability to bypass multi-drug resistance mechanisms, making it a focus of interest for further clinical investigations. Its applications are primarily centered on oncology, where it holds potential for integration into therapeutic protocols aimed at treating malignancies that exhibit high levels of resilience against existing treatment modalities. The continued study of BAL-27862 could further elucidate its full potential and role in the development of advanced cancer therapeutics.Formula:C20H17N7O2Purity:Min. 95%Molecular weight:387.4 g/mol5-Chloro-2-methyl-3-isothiazolone-d3
CAS:5-Chloro-2-methyl-3-isothiazolone-d3 is a deuterated form of the chemical compound 5-chloro-2-methyl-3-isothiazolone, often employed in specialized research settings. This compound is derived synthetically and isotopically labeled for accurate tracking in various analytical applications. The incorporation of deuterium atoms in place of hydrogen allows for enhanced detection and precise identification in mass spectrometry-based analyses. The primary mode of action for this labeled compound is its function as an internal standard in quantitative analytical methods. By facilitating the reliable quantification of its non-labeled counterpart, it helps in assessing the presence and concentration of the compound in complex matrices with increased accuracy. In scientific research, 5-Chloro-2-methyl-3-isothiazolone-d3 is predominantly used in studies focusing on the behavior and degradation of biocides in various environments. Its applications extend to quality control, where its presence ensures consistency and reliability in product formulations by enabling precise calibration of analytical instruments. Overall, it is an invaluable tool for chemists looking to achieve high degrees of specificity and accuracy in their experimental protocols.Formula:C4H4ClNOSPurity:Min. 95%Molecular weight:152.62 g/molSerine hydrolase inhibitor-11
CAS:Serine hydrolase inhibitor-11 is a biochemical research tool designed to target the serine hydrolase enzyme class. This compound is synthesized through advanced chemical methods, offering precise inhibitory effects on serine hydrolase enzymes. It functions by covalently binding to the active serine site within the enzyme's structure, effectively blocking its catalytic action and altering substrate metabolism. The primary utility of Serine hydrolase inhibitor-11 is in the field of biochemical and pharmacological research, where it is employed to study the enzymatic pathways involving serine hydrolases. These enzymes play critical roles in numerous physiological processes, making their modulation crucial for understanding pathological states and developing therapeutic strategies. Applications include elucidating the enzymatic mechanisms in various conditions, exploring drug discoveries, and investigating metabolic pathways. Its precise inhibition allows researchers to dissect complex biological interactions, providing insights into the enzyme's functional and structural roles within biological systems.Formula:C9H13N3OPurity:Min. 95%Molecular weight:179.22 g/molMc-Gly-Gly-Phe
CAS:Mc-Gly-Gly-Phe is a synthetic tripeptide, which is commonly used in the field of peptide research. It consists of three amino acids: N-methylglycine (sarcosine), glycine, and phenylalanine. This peptide is typically derived through chemical synthesis, utilizing solid-phase peptide synthesis techniques to ensure precision and purity. The mode of action for Mc-Gly-Gly-Phe involves mimicking portions of larger, bioactive proteins or signaling molecules, providing a simplified model for studying protein interactions and functions. By replicating specific sequences, researchers can investigate the structural and functional attributes related to binding specificity, enzymatic activity, or receptor interaction. In terms of applications, Mc-Gly-Gly-Phe is employed extensively in biochemical assays, drug development studies, and structural analysis of peptides. It serves as a foundational tool for elucidating mechanisms of action for proteins and enzymes, allowing scientists to deconstruct and reconstruct biological processes at the molecular level. Additionally, it aids in the exploration of new therapeutic approaches by providing insights into peptide-based drug design and delivery systems.Formula:C23H28N4O7Purity:Min. 95%Molecular weight:472.5 g/molOltipraz metabolite M2
CAS:Oltipraz metabolite M2 is a pharmacologically active compound, which is derived from the metabolism of Oltipraz, a well-known chemopreventive agent. This metabolite is produced through hepatic biotransformation processes and plays a critical role in mediating the biological effects associated with its parent compound. The mode of action of Oltipraz metabolite M2 involves modulation of specific cellular pathways, particularly the activation of the Nrf2 (nuclear factor erythroid 2-related factor 2) pathway. This activation leads to the upregulation of genes responsible for the synthesis of detoxifying enzymes, contributing to its antioxidative and chemopreventive properties. Oltipraz metabolite M2 is primarily used in research settings to explore its potential in cancer prevention and treatment. Studies often focus on its ability to mitigate oxidative stress and influence carcinogen metabolism. This metabolite is of significant interest to scientists who are investigating new therapeutic strategies for reducing cancer risk and understanding the molecular mechanisms underlying chemopreventive actions.Formula:C10H12N2S2Purity:Min. 95%Molecular weight:224.4 g/molDO34 analog
CAS:DO34 analog is a biochemical compound, which is synthesized from organic sources to mimic specific biochemical pathways. Its mode of action involves selective modulation or inhibition of enzyme activity, allowing researchers to study various biological processes in vitro and in vivo. The compound is often utilized in fields such as biochemistry, pharmacology, and molecular biology for its ability to influence cellular mechanisms. The applications of DO34 analog are centered around understanding enzyme functions, investigating metabolic pathways, and exploring therapeutic targets for drug discovery. Researchers employ this analog to dissect complex biological interactions and assess potential intervention points for disease treatment. Through meticulous experimental design and comprehensive data analysis, scientists leverage the properties of DO34 analog to advance knowledge in life sciences and bolster the development of innovative medical solutions.Formula:C26H28F3N5O4Purity:Min. 95%Molecular weight:531.5 g/molKetoprofen - Bio-X ™
CAS:Ketoprofen is a non-steroidal anti-inflammatory drug (NSAID) that has been used to treat pain and inflammation. Ketoprofen inhibits the production of inflammatory prostaglandins, which are released by platelets in response to injury or infection. The main mechanism of action is inhibition of cyclooxygenase enzymes COX 1 and COX 2 at the level of transcriptional activation. This results in decreased levels of prostaglandins that mediate pain, fever and inflammation. Ketoprofen is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C16H14O3Purity:Min. 95%Color and Shape:PowderMolecular weight:254.28 g/molErlotinib hydrochloride - Bio-X ™
CAS:Erlotinib is a drug that is used to treat human malignancies. It is a type of kinase inhibitor that inhibits the EGFR tyrosine kinase, preventing the activation of downstream signalling pathways. Erlotinib has been shown to be effective in treating squamous cell carcinoma, melanoma, and other types of skin cancer. Additionally, Erlotinib has potential for use as an anti-inflammatory agent in the treatment of psoriasis and ulcerative colitis. Erlotinib hydrochloride is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C22H23N3O4·HClPurity:Min. 95%Color and Shape:PowderMolecular weight:429.9 g/molKT-474
CAS:KT-474 is an oral small molecule protein degrader, which is derived from targeted protein degradation technology. This compound functions as an investigational agent specifically designed to degrade IRAK4, a key kinase involved in the signaling pathways of pro-inflammatory cytokines such as IL-1 and IL-18, which are crucial in the regulation of innate and adaptive immunity. The mode of action is based on hijacking the cell's ubiquitin-proteasome system to selectively bind to and degrade IRAK4, thereby reducing inflammation at the molecular level. The primary applications of KT-474 are in the treatment of autoimmune and inflammatory diseases where IRAK4 plays a pivotal role. By selectively targeting and degrading IRAK4, KT-474 presents a novel approach to modulating immune responses, potentially addressing conditions such as rheumatoid arthritis, systemic lupus erythematosus, and other chronic inflammatory disorders. Its development represents an advancement in therapeutic strategies aiming to provide precision medicine solutions by manipulating the protein homeostasis within cells. This approach underscores the potential of targeted protein degradation as a versatile and effective modality in therapeutic contexts.Formula:C44H49F2N11O6Purity:Min. 95%Molecular weight:865.93 g/molIdebenone - Bio-X ™
CAS:Ibedenone is an analogue of ubiquinone that is used to treat visual impairment in patients with Leber’s Hereditary Optic Neuropathy. It is also known as an analogue of Coenzyme Q10. It has antioxidant properties. This drug increases ATP production that’s needed for mitochondrial function and reduces free radicals. It also protects the lipid membrane and mitochondria from oxidative damage. Idebenone is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C19H30O5Purity:Min. 95%Color and Shape:PowderMolecular weight:338.44 g/mol1,4-Dideoxy-1,4-imino-D-arabinitol hydrochloride
CAS:Inhibitor of glycogen phosphorylase and alpha-glucosidasesFormula:C5H11NO3·HClPurity:Min. 96 Area-%Color and Shape:PowderMolecular weight:169.61 g/molAldi-2
CAS:Aldi-2 is a cutting-edge CRISPR-based gene editing tool, which is an engineered ribonucleoprotein complex derived from the Streptococcus pyogenes bacterial immune system. The system operates through the formation of a complex between a guide RNA (gRNA) and the Cas9 protein, facilitating targeted double-strand breaks in DNA sequences. This mode of action relies on the gRNA to provide specificity, directing the Cas9 enzyme to a complementary DNA sequence in the genome, where it induces a precise cut. Aldi-2 is primarily used in genomic research applications, where it is employed to investigate gene function, create knockout models, and study disease mechanisms. Its applications extend to potential therapeutic uses, such as correcting genetic mutations associated with monogenic disorders. In agricultural biotechnology, Aldi-2's ability to enhance crop traits through targeted gene modification is also actively being explored. By enabling high-precision genetic surgeries, Aldi-2 represents a powerful tool for advancing our understanding of genetics and developing targeted interventions across multiple scientific domains.Formula:C12H16FNO2Purity:Min. 95%Molecular weight:225.26 g/molBenziodarone
CAS:Uricosuric agentFormula:C17H12I2O3Purity:Min. 95%Color and Shape:Beige PowderMolecular weight:518.08 g/molPB 28 dihydrochloride
CAS:PB 28 dihydrochloride is a selective sigma-2 receptor ligand, which is a synthetic compound targeting specific receptor sites. These receptors are predominantly found in cancer cells, implicating them in cellular proliferation and apoptosis. PB 28 dihydrochloride is synthetically derived and is employed extensively in preclinical studies. Its mode of action involves high-affinity binding to the sigma-2 receptors, allowing modulation of cellular stress responses and apoptosis pathways. Predominantly utilized in oncology research, PB 28 dihydrochloride provides valuable insights into cancer biology. By influencing cancer cell viability, it aids in the understanding of tumor progression and offers potential as a therapeutic lead. Additionally, it facilitates the investigation of sigma receptor functions and their role in various physiological processes. Such studies are foundational in developing novel therapeutic strategies targeting cancer and other diseases characterized by abnormal cell growth and division.Formula:C24H38N2O·2HClPurity:Min. 95%Molecular weight:443.5 g/molNiacinamide
CAS:Vitamin B3; antioxidant; favours cell repairFormula:C6H6N2OPurity:98.5 To 101.5 Area-%Color and Shape:White PowderMolecular weight:122.12 g/molSorafenib - Bio-X ™
CAS:Sorafenib is a drug that belongs to the class of multikinase inhibitors. It inhibits a number of kinases, including the Mcl-1 protein, which is involved in apoptosis along with blocking picolinic acid (PA), an endogenous metabolite involved in apoptosis signal transduction. Sorafenib also binds to epidermal growth factor receptor (EGFR) on the surface of cancer cells, inhibiting the production of proteins that are required for angiogenesis, thus blocking the formation of new blood vessels. Sorafenib may also inhibit P-glycoprotein (Pgp) activity. Overall, these cytotoxic effects give Sorafenib anti-tumor properties, inhibiting angiogenesis and cellular transformation, which are the two main processes of tumor growth and metastasis. Sorafenib has been shown to be effective against a range of solid tumors such as breast, prostate and lung cancers and is also used for the treatment of metastatic colorectal cancer and renal cell carcinoma. A combination therapy group found that sorafenib was more effective when used with interferon alfa-2b for the treatment of advanced renal cell carcinoma. Sorafenib also has the potential for drug interactions with other drugs that are metabolized by cytochrome P450 enzymes. Sorafenib is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready to use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C21H16ClF3N4O3Purity:Min. 98%Color and Shape:PowderMolecular weight:464.82 g/molK 114
CAS:K 114 is a selective herbicide, which is a synthetic chemical intervention designed to target and manage unwanted plant species in agricultural settings. Derived from advanced chemical synthesis processes, it ensures high purity and efficacy in real-world applications. The mode of action involves the inhibition of key enzymatic pathways crucial for the survival and growth of broadleaf and grassy weeds, thereby effectively hindering their development without affecting the desired crops. The primary uses and applications of K 114 are in controlling a variety of weeds in diverse cropping systems such as maize, soybeans, and wheat. Its selectivity allows for targeted action, minimizing damage to the crops and preserving yield potential. Researchers and practitioners in agronomy and crop protection will find K 114 particularly valuable in integrated weed management programs, where it can be combined with other cultural and chemical practices to sustain agricultural productivity and mitigate resistance development in weed populations.Formula:C22H17BrO2Purity:Min. 95%Molecular weight:393.27 g/molSM-276001
CAS:SM-276001 is a selective androgen receptor modulator (SARM), which is a non-steroidal compound derived from an extensive process of chemical synthesis focused on creating receptor-specific agonists. Designed to bind selectively to androgen receptors, its mode of action leverages differential tissue selectivity, aiming to stimulate anabolic activity in muscle and bone while minimizing androgenic effects in other tissues. This selectivity is achieved by modulating receptor configurations to induce distinct transcriptional pathways compared to traditional anabolic steroids. The applications of SM-276001 are primarily within the realm of potentially treating muscle wasting conditions, osteoporosis, and age-related muscle degeneration. By targeting specific androgen receptors, it may enhance muscle and bone growth without exerting significant impact on prostate or cardiac tissues, which remains a substantial concern with other androgen-based therapies. This tissue-selective action is of particular interest in both clinical and experimental settings, where precise modulation of anabolic effects is desired. Further research into its pharmacokinetics and long-term effects continues to be a significant focus within the scientific community, given its promising therapeutic potential.Formula:C16H21N7OPurity:Min. 95%Molecular weight:327.38 g/molNutlin 3A
CAS:Antagonist of proto-oncogene MDM2 and its interaction with p53Formula:C30H30Cl2N4O4Purity:Min. 95%Molecular weight:581.49 g/molCyjohnphos hbf4
CAS:Cyjohnphos hbf4 is a research tool that binds to an ion channel and blocks its activity. Cyjohnphos hbf4 has been shown to be an activator of the ligand-gated ion channels, such as nicotinic acetylcholine receptor and GABA receptors. This compound also binds to the GABAA receptor, which is responsible for regulating synaptic transmission in the brain. Cyjohnphos hbf4 has been shown to inhibit the activity of potassium channels in a voltage-dependent manner. It does not affect calcium or sodium channels. Cyjohnphos hbf4 has been used as an inhibitor of peptide binding in cell biology experiments and as a pharmacological tool when studying protein interactions.Formula:C24H32BF4PPurity:Min. 95%Molecular weight:438.29 g/molNalmefene hydrochloride
CAS:Controlled ProductOpioid receptor antagonistFormula:C21H25NO3•HClPurity:Min. 98 Area-%Color and Shape:PowderMolecular weight:375.89 g/molSiltenzepine
CAS:Please enquire for more information about Siltenzepine including the price, delivery time and more detailed product information at the technical inquiry form on this pageFormula:C19H20ClN3O4Purity:Min. 95%Molecular weight:389.8 g/molRK-33
CAS:RK-33 is a small molecule inhibitor, which is synthesized as a chemical compound. It functions by targeting and inhibiting the activity of DDX3, a DEAD-box RNA helicase, which plays a crucial role in the modulation of RNA biogenesis and translation processes. By interfering with DDX3, RK-33 disrupts processes essential for the proliferation of certain cancer cells, making it a significant focus in cancer research. The compound demonstrates potential therapeutic applications in oncology, particularly in the treatment of cancers showing elevated DDX3 activity. Studies have shown its ability to impede the growth of tumor cells in various cancer models, highlighting its role in enhancing the efficacy of existing therapeutic strategies. Researchers are keenly investigating RK-33's effectiveness in combination therapies to better understand its potential in reducing tumor resistance and improving treatment outcomes. Such investigations could pave the way for developing targeted therapies across diverse types of malignancies where DDX3 is a pivotal factor.Formula:C23H20N6O3Purity:Min. 95%Molecular weight:428.44 g/molSNC 80
CAS:ÎŽ opioid receptor agonist; anti-nociceptive; anti-depressantFormula:C28H39N3O2Purity:Min. 95%Color and Shape:White to off-white solid.Molecular weight:449.63 g/molBendamustine HCl - Bio-X ™
CAS:Bendamustine is a bifunctional mechlorethamine derivative with alkylator and antimetabolite properties. An alkylating group, a benzimidazole ring that may function as a purine analog, and a butyric acid side chain are the three active moieties found in bendamustine. Through its function as an alkylating agent, Bendamustine causes intra and inter-strand crosslinks between DNA bases resulting in DNA, RNA synthesis inhibition and cell death. Bendamustine HCl is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C16H21Cl2N3O2•HClPurity:Min. 95%Color and Shape:PowderMolecular weight:394.72 g/molElesclomol
CAS:Elesclomol is an investigational anticancer agent, which is a small-molecule compound. It functions by targeting the cellular oxidative stress pathway; specifically, it enhances the production of reactive oxygen species (ROS) within cancer cells. By elevating ROS levels beyond the threshold tolerable by cancer cells, Elesclomol induces apoptosis through the disruption of mitochondrial function, making it selective for environments with heightened oxidative stress. Originally sourced from proprietary chemical libraries and identified through its potent cytotoxic effects in vitro, Elesclomol's mechanism leverages the inherent oxidative susceptibility of certain cancer phenotypes. Its primary action involves the transfer of electrons from ferrous ions, leading to the disproportionate accumulation of ROS, disturbing the delicate redox balance essential for cancer cell survival. Elesclomol has been studied in combination with other chemotherapeutic agents and has shown potential in treating various malignancies, particularly melanoma and other cancers characterized by increased oxidative stress. Despite its promise, further investigation is warranted to fully elucidate its therapeutic index and integration into oncological treatment regimens.Formula:C19H20N4O2S2Purity:Min. 95%Color and Shape:PowderMolecular weight:400.52 g/molLosmiprofen
CAS:Losmiprofen is a non-steroidal anti-inflammatory drug (NSAID) synthesized through pharmaceutical chemical processes. It is structurally designed to inhibit cyclooxygenase (COX) enzymes, which play a key role in the conversion of arachidonic acid to prostaglandins. Prostaglandins are lipid compounds that exacerbate inflammation, pain, and fever. By selectively acting on the COX enzymes, losmiprofen mitigates the synthesis of these mediators, thereby reducing inflammatory responses. The primary clinical applications of losmiprofen include the management of various types of pain and inflammatory conditions. This encompasses its use in alleviating symptoms of osteoarthritis, rheumatoid arthritis, and other musculoskeletal disorders. Its efficacy in managing post-operative pain has also been documented, making it a versatile agent in pain management protocols. The pharmacokinetic profile of losmiprofen facilitates a controlled modulation of inflammatory processes, leading to improved patient outcomes with minimized side effects. Researchers continue to explore its therapeutic potential and optimize its clinical implementation, highlighting the drug's significance in the field of anti-inflammatory pharmacotherapy.Formula:C17H15ClO4Purity:Min. 95%Molecular weight:318.7 g/moleIF4A3-IN-2
CAS:eIF4A3-IN-2 is a small molecule inhibitor targeting eIF4A3, which is a DEAD-box RNA helicase. This compound is synthesized from a chemical library designed to modulate RNA-binding proteins. Its mode of action involves binding to eIF4A3 to inhibit its helicase activity, thereby disrupting the process of nonsense-mediated mRNA decay and pre-mRNA splicing. This specific inhibition is particularly valuable for exploring the regulation of gene expression at the post-transcriptional level. In scientific research, eIF4A3-IN-2 is employed to study the intricate mechanisms of RNA processing and the role of RNA helicases in cellular biology. Its application helps in elucidating the pathways involved in mRNA surveillance and the dynamic regulation of splicing, which can have implications in cancer research and the development of therapeutic strategies targeting dysregulated RNA processing in various diseases. Researchers utilize this inhibitor to better understand the molecular underpinnings of splicing-related pathologies, providing insights into potential interventions for conditions where aberrant RNA metabolism is a hallmark.Formula:C25H19Br2ClN4O2Purity:Min. 95%Molecular weight:602.7 g/molRebamipide - Bio-X ™
CAS:Rebamipide is a gastroprotective agent that is used to treat various gastrointestinal disorders such as gastric ulcers and GERD. This drug’s mechanism of action is not fully understood however, it is thought to exert its effects by promoting the secretion of protective mucus in the stomach and intestine, which helps to create a barrier against stomach acid and other irritants. Additionally, it has antioxidant and anti-inflammatory properties that can help reduce tissue damage. Rebamipide is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C19H15ClN2O4Purity:Min. 95%Color and Shape:PowderMolecular weight:370.79 g/molGaleterone
CAS:CYP17 lyase inhibitor; androgen receptor antagonistFormula:C26H32N2OPurity:Min. 95%Molecular weight:388.55 g/molJionoside A1
CAS:Jionoside A1 is a triterpenoid saponin, which is a naturally occurring compound principally derived from the plant species Cyclocarya paliurus. These saponins are secondary metabolites that exhibit a diverse range of biological activities. The source of Jionoside A1, Cyclocarya paliurus, is known for its medicinal properties and is traditionally used in various herbal formulations. The mode of action of Jionoside A1 involves its ability to disrupt cellular membranes due to its amphipathic nature. This action not only facilitates its antibacterial properties by compromising the integrity of bacterial cell walls but also contributes to its antioxidant activity through neutralization of free radicals. Jionoside A1 finds potential applications in the pharmaceutical and nutraceutical industries due to its antibacterial and antioxidant effects. In pharmaceutical research, it is studied for its ability to combat bacterial infections and its potential role in mitigating oxidative stress-related diseases. In addition, its bioactive properties open avenues for exploration in the development of functional foods and dietary supplements aiming to enhance health and provide therapeutic benefits.Formula:C36H48O20Purity:Min. 95%Molecular weight:800.76 g/molVecuronium bromide
CAS:Antagonist of nicotinic acetylcholine receptors; nondepolarising muscle relaxantFormula:C34H57BrN2O4Purity:Min. 95%Molecular weight:637.73 g/molFk 102 CO(III) pf6 salt
CAS:FK 102 CO(III) PF6 is a cobalt(III) complex salt, which is a coordination compound utilized extensively in organometallic chemistry and catalysis. Derived from cobalt, a transition metal known for its diverse oxidation states and coordination abilities, this compound is synthesized through the combination of cobalt with specific ligands, resulting in a hexafluorophosphate salt. The mode of action of this complex involves its ability to facilitate electron transfer processes, making it an excellent catalyst for various organic reactions. In research applications, FK 102 CO(III) PF6 is employed in the study of reaction mechanisms and in the development of new synthetic pathways. Its unique properties make it suitable for applications in fields such as polymerization, oxidation-reduction reactions, and cross-coupling reactions. Scientists benefit from its stability and reactivity, which are pivotal for understanding and optimizing catalytic processes. By offering a reliable means to explore complex chemical transformations, FK 102 CO(III) PF6 significantly contributes to advancements in material science and synthetic chemistry.Formula:C24H21CoF18N9P3Purity:Min. 95%Molecular weight:929.31 g/molVU0453379
CAS:Please enquire for more information about VU0453379 including the price, delivery time and more detailed product information at the technical inquiry form on this pageFormula:C26H34N4O2Purity:Min. 95%Molecular weight:434.6 g/molc16(Plasm) lpc
CAS:C16(Plasm) LPC is a lysophosphatidylcholine, a type of lysophospholipid derived predominantly from plasma membrane phospholipids. It originates from the enzymatic action of phospholipase A2, which cleaves the fatty acid chain, typically at the sn-2 position. This leaves behind the lysophospholipid with a single acyl chain. LPC serves as a bioactive signaling molecule, facilitating cellular communication by acting on G protein-coupled receptors and influencing immune cell activity. It can act as an emulsifying agent in biochemical reactions and influence lipid metabolism. LPC is also involved in the regulation of inflammatory responses and is implicated in pathophysiological conditions such as atherosclerosis and metabolic syndrome. Its presence and abundance can serve as biomarkers for various diseases, and it plays roles in the modulation of endothelial cell function, smooth muscle activity, and oxidative stress response. In research applications, C16(Plasm) LPC is used to study cell signaling pathways, particularly in the context of inflammation and metabolic diseases. The product serves as a valuable tool for scientists investigating lipid-mediated signaling mechanisms and their broader physiological implications.Formula:C24H50NO6PPurity:Min. 95%Molecular weight:479.63 g/molATP-Red 1
CAS:ATP-Red 1 is a fluorescent probe, which is a synthetic molecule that allows for the visualization and quantification of adenosine triphosphate (ATP) within live cells. This product is derived from benzothiazole, a heterocyclic compound, and it exploits the unique properties of this structure to detect ATP with high specificity. The mode of action of ATP-Red 1 involves a fluorescence enhancement mechanism, where its binding to ATP results in a significant increase in fluorescence intensity. This enables the direct monitoring of ATP dynamics in real-time. The primary use of ATP-Red 1 is in the measurement of cellular energy states, providing insights into metabolic processes and cellular health. It is particularly valuable in studies of mitochondrial function and bioenergetics, where ATP plays a critical role. Researchers can utilize this probe in live-cell imaging experiments to assess changes in ATP concentrations, thereby gaining a deeper understanding of cellular metabolism under various physiological conditions. This application is pivotal in fields such as pharmacology, cancer research, and neurology, where alterations in energy metabolism are often implicated.Formula:C34H36BN3O4Purity:Min. 95%Molecular weight:561.5 g/molDeruxtecan
CAS:an ADC drug-linker conjugate composed of an DX-8951 derivative (Exatecan) and a maleimide-GGFG peptide linker.Formula:C52H56FN9O13Purity:Min. 95%Molecular weight:1,034.1 g/molGB1107
CAS:Please enquire for more information about GB1107 including the price, delivery time and more detailed product information at the technical inquiry form on this pageFormula:C20H16Cl2F3N3O4SPurity:Min. 95%Color and Shape:PowderMolecular weight:522.3 g/mol8-Deschloro-8-bromo-N-methyl desloratadine
CAS:Antagonist of platelet activating factorFormula:C20H21BrN2Purity:Min. 95%Color and Shape:PowderMolecular weight:369.3 g/molMiransertib (ARQ 092) HCl
CAS:Miransertib (ARQ 092) HCl is a selective inhibitor, which is a synthetic small molecule specifically targeting the AKT pathway. It is sourced through specialized chemical synthesis designed to interfere with key signaling pathways implicated in the proliferation and survival of cancer cells. The mode of action involves the inhibition of the serine/threonine kinase AKT, an integral part of the PI3K/AKT/mTOR signaling pathway that is frequently dysregulated in various cancers. Miransertib's ability to inhibit AKT disrupts aberrant signaling cascades, leading to the suppression of cancer cell growth and induction of apoptosis. Its primary uses and applications are in the therapeutic investigation of disorders such as Proteus syndrome, PIK3CA-related overgrowth spectrum (PROS), and situations where AKT pathway activation contributes to oncogenesis. Current research includes clinical trials focusing on its efficacy and safety profile to better understand its potential as a targeted cancer therapy.Formula:C27H25ClN6Purity:Min. 95%Molecular weight:468.98 g/molSaxagliptin
CAS:DPP-4 enzyme inhibitor; anti-diabeticFormula:C18H25N3O2Color and Shape:White PowderMolecular weight:315.41 g/molDapagliflozin - Bio-X ™
CAS:Dapagliflozin is a sodium-glucose cotransporter subtype 2 (SGLT2) inhibitor that can be used in the treatment of diabetes mellitus type 2. It inhibits glucose reabsorption in the proximal tubule of the nephron and results in glycosuria, which helps to improve glycaemic control. Also, Dapagliflozin is used to lower the risk of sustained eGFR decline, end-stage renal disease, cardiovascular death, and hospitalization for heart failure in patients with chronic kidney disease who are at risk of progression. Dapagliflozin is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready to use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C21H25ClO6Purity:Min. 99 Area-%Color and Shape:PowderMolecular weight:408.87 g/molOndansetron HCl dihydrate - Bio-X ™
CAS:Ondansetron is a serotonin 5-HT3 receptor antagonist that is used to prevent vomiting and nausea in patients undergoing chemotherapy. This drug blocks the initiation of the vomiting reflex. Ondansetron HCl dihydrate is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C18H19N3O•HCl•(H2O)2Purity:Min. 95%Color and Shape:PowderMolecular weight:365.85 g/mol3-Deazaneplanocin hydrochloride - Technical
CAS:Inhibitor of S-adenosylhomocysteine hydrolase that disrupts histone methylation by EZH2. Anti-proliferative in some breast cancer and invasive prostate cancer cell lines. One of four key molecules required for inducing chemical reprogramming of somatic cells into induced pluripotent stem cells (iPSC).Formula:C12H14N4O3·ClHPurity:Min. 70 Area-%Color and Shape:PowderMolecular weight:298.73 g/molepsilon - PKC Inhibitor
eV1-2 is a selective εPKC inhibitor peptide which interferes with protein-protein interactions between the ϵPKC isozyme and its anchoring protein (ϵRACK). ϵPKC and ϵRACK regulate the contraction rate of heart muscle cells and provide protection from ischemia induced cell death. ϵV1-2 is derived from the C2 domain of ϵPKC, a region important for protein-protein interactions and thus acts as a competitive inhibitor of these interactions. The C2 region is well conserved between species, but different enough from other PKC isozymes to allow for targeted inhibition (ϵV1-2 is 88% identical between sea slugs and rat ϵPKC, yet only 36% identical between rat ϵPKC and rat θ'PKC). This peptide contains a C-terminal cysteine residue for conjugation to a carrier protein.Purity:Min. 95%Color and Shape:PowderMolecular weight:946.5 g/molNSC 135130
CAS:NSC 135130 is a synthetic compound that serves as an antioxidant and anti-inflammatory agent. It is derived through chemical synthesis, a process involving the combination of various elements and compounds to produce a novel substance with specific desired properties. The mode of action of NSC 135130 primarily involves the scavenging of free radicals and modulation of inflammatory pathways, thus helping to mitigate oxidative stress and inflammation at the cellular level. This compound is under investigation for its potential therapeutic applications in various inflammatory and oxidative stress-related conditions. Its efficacy in minimizing cellular damage makes it a candidate for further research in diseases where oxidative damage and inflammation play a critical role, such as cardiovascular diseases, neurodegenerative disorders, and certain cancers. Ongoing studies aim to elucidate its pharmacokinetics, bioavailability, and long-term effects in biological systems to better understand its potential clinical value.Formula:C12H23NO4Purity:Min. 95%Molecular weight:245.32 g/molTrk-in-3
CAS:Trk-in-3 is an inhibitor specifically targeting tyrosine kinase receptors, derived from a combination of synthesized natural compounds. This inhibitor functions by selectively binding to the ATP-binding site of Trk receptors, thus disrupting downstream signaling pathways that are crucial for cellular proliferation and survival. Trk-in-3's mode of action involves the interruption of neurotrophic signaling, which is fundamentally important in the regulation of neuronal growth, differentiation, and apoptosis. By blocking these signaling pathways, Trk-in-3 can effectively modulate neurotrophic support in various cellular contexts. The applications of Trk-in-3 are expansive, making it a potent tool in research focused on neurodegenerative disorders, cancer, and other diseases characterized by aberrant signaling pathways. In scientific investigations, Trk-in-3 is utilized to elucidate the roles of Trk signaling in disease pathogenesis and to explore therapeutic interventions targeting these pathways. Its specificity and efficacy in inhibiting Trk activation positions Trk-in-3 as a critical compound in both preclinical studies and experimental therapeutic strategies.Formula:C20H19F5N4O4Purity:Min. 95%Molecular weight:474.4 g/molRo 31-8220 mesylate
CAS:Ro 31-8220 mesylate is a synthetic compound, which is a potent, selective inhibitor predominantly sourced from rational drug design techniques targeting the phosphodiesterase enzyme family. With its mode of action centered around the inhibition of protein kinase C (PKC) and other related kinases, Ro 31-8220 mesylate disrupts downstream signaling pathways, impacting cellular processes such as proliferation, differentiation, and apoptosis. This compound is used extensively in research settings to study signal transduction pathways and the role of kinases in various cellular functions. Its ability to selectively inhibit PKC makes it valuable for investigating the mechanisms underlying diseases where PKC is implicated, such as cancer, cardiovascular diseases, and neurological disorders. Additionally, Ro 31-8220 mesylate serves as a tool in pharmacological research to explore potential therapeutic targets and elucidate complex biochemical interactions within cells. The compound’s specificity and potency underscore its utility in advancing scientific understanding of kinase-related processes.Formula:C25H23N5O2S·CH3SO3HPurity:Min. 95%Molecular weight:553.65 g/mol(-)-Nyasol
CAS:(-)-Nyasol is a naturally occurring lignan, which is a type of phytoestrogen found in certain plant species. It is primarily sourced from the roots of Anemarrhena asphodeloides, a herb widely used in traditional medicine. The compound exhibits its effects through modulation of estrogen receptors, demonstrating selective binding affinity that influences various estrogen-mediated pathways. The anti-inflammatory and anticancer potential of (-)-Nyasol is of particular interest. It exhibits a unique mode of action by modulating intracellular signaling pathways, including NF-kB and MAPK, which play pivotal roles in inflammatory responses and cancer cell proliferation. Additionally, its capacity to induce apoptosis and inhibit angiogenesis makes it a promising candidate for therapeutic research. Applications of (-)-Nyasol extend beyond its pharmacological potential. It is studied for its antioxidative properties and its role in mitigating oxidative stress, which is implicated in numerous diseases. Researchers continue to explore its full spectrum of biological activities, seeking to harness its natural properties for pharmaceutical development and understand its interactions at the molecular level.Formula:C17H16O2Purity:Min. 95%Molecular weight:252.31 g/molSLF
CAS:SLF-100 is an enzymatic solution, which is derived from a consortium of beneficial microorganisms. This product functions by breaking down organic matter and releasing bound nutrients within the soil, thus enhancing nutrient availability and promoting plant health. The action of SLF-100 is mediated primarily by its enzymatic components, which include cellulase, amylase, and protease, among others. These enzymes work synergistically to degrade complex organic compounds, facilitating the release of macro and micronutrients. SLF-100 has applications in agricultural and horticultural settings, where it is utilized to improve soil fertility and boost plant growth. Its ability to enhance nutrient uptake makes it particularly useful for crops in nutrient-deficient soils or in conjunction with organic farming practices. In addition, SLF-100 can aid in the decomposition of organic amendments, thereby accelerating their benefits and contributing to sustainable soil management practices. Researchers and practitioners will find its mode of action relevant for both practical applications in the field and as a subject for further studies on enzyme-based soil amendments.Formula:C30H40N2O6Purity:Min. 95%Molecular weight:524.6 g/molLaniquidar
CAS:Laniquidar is a pharmacological agent classified as a third-generation multidrug resistance (MDR) modulator. It is derived from a class of compounds specifically designed to overcome MDR in cancer by targeting P-glycoprotein, a well-known efflux transporter protein. Laniquidar functions by inhibiting the action of P-glycoprotein, which is often overexpressed in various cancer cells and facilitates the efflux of chemotherapeutic drugs, thereby reducing their intracellular concentrations and effectiveness. The principal application of Laniquidar is in oncology, where it is explored as an adjuvant to conventional chemotherapeutic treatments. By sensitizing cancer cells to these treatments through the inhibition of drug efflux, it holds potential to enhance the efficacy of existing cancer therapies, especially in cases where tumors have developed resistance. While it is primarily under investigation for its potential in enhancing drug uptake in resistant cancer types, further studies continue to explore its broader applications and possible integration into cancer treatment regimens.Formula:C37H36N4O3Purity:Min. 95%Molecular weight:584.7 g/molPioglitazone HCl - Bio-X ™
CAS:Pioglitazone is a thiazolidinedione drug that is used in combination with diet change and exercise to treat glycemic levels in patients with type 2 diabetes mellitus. This drug is an agonist of peroxisome proliferator-activated receptor-gamma and increases glucose uptake. In animal studies, Pioglitazone has shown to have anti-inflammatory properties. Pioglitazone HCl is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C19H20N2O3S•HClPurity:Min. 95%Color and Shape:PowderMolecular weight:392.9 g/molDH 97
CAS:DH 97 is a highly specialized catalytic agent, which is a product derived from advanced bioorganic synthesis techniques with sophisticated molecular engineering. This catalytic agent is designed to facilitate specific chemical reactions by lowering the activation energy, thus enhancing efficiency and selectivity. The source of DH 97 involves the integration of synthetic organic compounds and biologically active materials, allowing for unique properties not found in traditional catalysts. The mode of action of DH 97 involves precise configurational interaction with substrate molecules, orchestrating the alignment and orientation necessary for effective transition state stabilization. This leads to enhanced reaction rates and increased yield of desired products while minimizing side reactions and byproducts. In practical applications, DH 97 is employed across various fields including pharmaceuticals, where it aids in the synthesis of complex molecules with high purity. It is also utilized in the field of materials science for the development of novel polymers and nanomaterials, where precise reaction control is paramount. Scientists appreciate its role in both academic research settings and industrial processes, where efficiency and specificity are critical for success.Formula:C22H26N2OPurity:Min. 95%Molecular weight:334.5 g/mol(2R)-N-[4-[2-[(4-Morpholin-4-ylphenyl)amino]pyrimidin-4-yl]phenyl]pyrrolidine-2-carboxamide
CAS:(2R)-N-[4-[2-[(4-Morpholin-4-ylphenyl)amino]pyrimidin-4-yl]phenyl]pyrrolidine-2-carboxamide is a small molecule inhibitor, which is synthetically derived and designed to interfere with specific protein kinase pathways that are crucial for cancer cell proliferation. The compound exerts its effect by targeting and inhibiting the activity of a distinct set of kinases, thereby disrupting downstream signaling pathways essential for tumor growth and survival. Its detailed mechanism of action involves competitive inhibition at the ATP-binding site of target kinases, effectively preventing substrate phosphorylation and subsequent signal transduction. This inhibition impedes cell cycle progression and induces apoptosis in cancerous cells, making it a compelling candidate in targeted cancer therapy. The applications of this molecule are primarily focused on oncological research, particularly in the development of targeted therapies aimed at tumors that exhibit overexpression or hyperactivation of specific kinases. Its comprehensive analysis in both in vitro and in vivo studies helps provide insights into the molecular basis of its action and assists in the design of combination therapies to improve clinical outcomes in oncology.Formula:C25H28N6O2Purity:Min. 95%Molecular weight:444.5 g/molAmelubant
CAS:Amelubant is a synthetic compound designed for use in detailed biochemical research and therapeutic investigations. As a product derived from innovative chemical synthesis techniques, Amelubant is engineered to interact with particular biological pathways, predominantly in the field of inflammatory response modulation. Its mode of action involves specific binding to target receptors, influencing downstream signaling cascades. This compound is primarily utilized in experimental settings to elucidate intricacies of receptor-ligand interactions and is investigated for potential applications in managing inflammatory conditions. Researchers employ Amelubant to explore its efficacy in cellular and animal models to better understand its pharmacokinetic and pharmacodynamic properties. Its role in modulating specific biochemical pathways makes it indispensable in studies focusing on inflammation and immune response.Formula:C33H34N2O5Purity:Min. 95%Molecular weight:538.6 g/molp-((4-((1-Oxotetradecyl)amino)phenyl)methyl)-phosphonic acid
CAS:P-((4-((1-Oxotetradecyl)amino)phenyl)methyl)-phosphonic acid is a synthetic compound, which is a specialized reagent used primarily in chemical research. It is derived from the modification of phosphonic acid with an aryl amide and a long-chain fatty acid substituent on the phenyl group. This structural configuration imparts the compound with unique physicochemical properties that make it suitable for various scientific studies. The mode of action involves its interaction with specific biochemical pathways as it can mimic certain biomolecular interactions due to its amphiphilic nature. This results in its utility for probing phosphonate-related biological mechanisms and potential pharmaceutical development processes. In terms of applications, p-((4-((1-Oxotetradecyl)amino)phenyl)methyl)-phosphonic acid may be used in the synthesis of novel compounds, molecular biology experiments, and as a tool for investigating enzyme inhibition. Its use is critical in the development of new inhibitors or activators that target enzyme pathways, offering insights into therapeutic targets and mechanism elucidation in complex biological systems.Formula:C21H36NO4PPurity:Min. 95%Molecular weight:397.5 g/molDasatinib monohydrate - Bio-X ™
CAS:Dasatinib is a potent inhibitor of tyrosine kinases and is used in the treatment of chronic myelogenous leukemia, gastrointestinal stromal tumors, and other types of cancer. It also inhibits many SRC- family kinases. Dasatinib has been shown to inhibit the proliferation of cancer cells, leading to cell lysis. Additionally, it has anti-angiogenic effects in vivo, inhibiting the development of new blood vessels in solid tumours. Dasatinib monohydrate is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C22H26ClN7O2S•H2OPurity:Min. 95%Color and Shape:PowderMolecular weight:506.02 g/mol3-Hydroxy-5-{[(naphthalen-2-yl)carbamoyl]amino}benzoic acid
CAS:3-Hydroxy-5-{[(naphthalen-2-yl)carbamoyl]amino}benzoic acid is a synthetic compound characterized by its complex molecular structure incorporating naphthalene and benzoic acid moieties. As a derivative of benzoic acid, it is typically synthesized through a series of chemical reactions designed to introduce the 3-hydroxy and carbamoyl functional groups, creating a compound with potentially unique bioactive properties. The mode of action of this compound is based on its ability to interact with specific biological targets, potentially influencing enzyme activity or receptor binding in a manner that is still the subject of ongoing research. This interaction can modulate biological pathways, potentially leading to therapeutic effects, although precise mechanisms may vary depending on the context. The principal interest in 3-Hydroxy-5-{[(naphthalen-2-yl)carbamoyl]amino}benzoic acid lies in its potential applications within pharmaceutical research, particularly in the development of novel therapeutics. Its diverse range of possible interactions makes it a candidate for further study in fields such as oncology, neurology, or immunology, where modulation of complex biological systems is desired. More detailed studies are necessary to fully understand its pharmacodynamics and pharmacokinetics to evaluate its suitability for clinical applications.Formula:C18H14N2O4Purity:Min. 95%Color and Shape:PowderMolecular weight:322.3 g/molCXCR2-IN-1
CAS:CXCR2-IN-1 is an inhibitor targeting the chemokine receptor CXCR2, which is synthesized through chemical methods. Its mode of action specifically involves the antagonism of the CXCR2 receptor, leading to the modulation of neutrophil recruitment and migration. This receptor is known for playing a pivotal role in inflammatory response pathways, making CXCR2-IN-1 a significant tool in experimental settings where modulation of this pathway is needed. The applications of CXCR2-IN-1 are primarily centered around inflammation and immune response research. By blocking the CXCR2 receptor, researchers can explore the impacts on cellular signaling pathways, particularly focusing on inflammatory diseases and conditions associated with abnormal chemotaxis. This compound is thus instrumental in both contributing to the understanding of complex biological processes and in potentially identifying novel therapeutic targets.Formula:C19H20Cl2FN3O4SPurity:Min. 95%Molecular weight:476.35 g/molArtesunate
CAS:Prodrug of dihydroartemisin (DHA); antimalarialFormula:C19H28O8Purity:Min. 98 Area-%Color and Shape:PowderMolecular weight:384.42 g/molNeratinib - Bio-X ™
CAS:Neratinib is a protein kinase inhibitor that is used in the treatment of breast cancer. This drug binds to and inhibits EGFR, HER2 and HER4. As a result of this, it prevents autophosphorylation of tyrosine residues and reduces oncogenic signalling. Neratinib is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C30H29ClN6O3Purity:Min. 95%Color and Shape:PowderMolecular weight:557.04 g/molRactopamine hydrochloride
CAS:Ractopamine hydrochloride is a beta-agonist that stimulates the release of fatty acids from adipose tissue, increasing food intake and weight gain in pigs. It has been shown to have significant interactions with other drugs used for bowel disease, as well as with sodium carbonate, which can be used for control analysis. Ractopamine hydrochloride is an effective drug to stimulate the release of estradiol benzoate in rats during pregnancy. The matrix effect observed when analyzing samples containing ractopamine hydrochloride may be due to its ability to bind to serum proteins or lipids. This drug has been shown to have molecular docking properties that are similar to those found in other molecules.Formula:C18H23NO3·HClPurity:Min. 95%Color and Shape:PowderMolecular weight:337.84 g/mol6-(2,4-Difluorophenoxy)-8-methyl-2-((tetrahydro-2H-pyran-4-yl)amino)pyrido[2,3-d]pyrimidin-7(8H)-one
CAS:6-(2,4-Difluorophenoxy)-8-methyl-2-((tetrahydro-2H-pyran-4-yl)amino)pyrido[2,3-d]pyrimidin-7(8H)-one is a synthetic organic compound, specifically a pyrido[2,3-d]pyrimidine derivative. It is designed through organic synthesis processes that involve strategic modifications to achieve specific chemical characteristics. The compound acts primarily as an inhibitor within various biochemical pathways, targeting specific molecular interactions involved in pathological conditions. This compound finds applications in therapeutic research, particularly as a potential candidate for pharmacological intervention in diseases where modulation of its target pathways is advantageous. Researchers often explore its efficacy and specificity in preclinical models, aiming to elucidate its role in disease amelioration. The versatility of this compound within drug discovery exemplifies the intersection of chemical innovation and biological application, offering potential insights into treatments for various disorders. As research progresses, in-depth studies continue to uncover the potential mechanisms and therapeutic indices of this sophisticated chemical entity.Formula:C19H18F2N4O3Purity:Min. 95%Molecular weight:388.4 g/molOrg 24598
CAS:A selective inhibitor of glial glycine transporter type 1 (GlyT-1b). It has no considerable affinity for noradrenaline, dopamine, serotonin and GABA receptors. Increases amplitude of electronically evoked NMDA receptor-mediated glutamatergic excitatory postsynaptic current (eEPSCs). This raises glycine levels in spinal cord slides and extends the duration of current at glycinergic synapses.Formula:C19H20F3NO3Purity:Min. 95%Molecular weight:367.36 g/molSRT2104
CAS:Activator of SIRT1 deacetylaseFormula:C26H24N6O2S2Purity:Min. 95%Color and Shape:PowderMolecular weight:516.64 g/molBIA 10-2474
CAS:BIA 10-2474 is an investigational pharmaceutical compound that functions as a fatty acid amide hydrolase (FAAH) inhibitor. This compound is derived from synthetic sources and works by inhibiting the FAAH enzyme, which is responsible for the degradation of endocannabinoids such as anandamide in the central nervous system. By inhibiting FAAH, BIA 10-2474 increases the levels of endocannabinoids, potentially impacting pain, mood, and neuroinflammation pathways. The primary research interest in BIA 10-2474 lies in its potential to treat neurological and psychiatric disorders through the modulation of the endocannabinoid system. Studies have been directed towards understanding its effects on chronic pain, anxiety, and neurodegenerative diseases. However, the clinical development of BIA 10-2474 faced significant setbacks due to severe adverse reactions observed in a Phase I clinical trial, highlighting the importance of careful evaluation of dosage and safety parameters. This compound has provided valuable insights into the pharmacological manipulation of the endocannabinoid system despite its challenges in clinical translation.Formula:C16H20N4O2Purity:Min. 98 Area-%Color and Shape:PowderMolecular weight:300.36 g/molFurosemide - Bio-X ™
CAS:Controlled ProductFurosemide is a potent loop diuretic that is used in the treatment of hypertension, liver cirrhosis, renal disease and heart failure. This drug acts on the kidney to increase water loss from the body. It inhibits electrolyte reabsorption. Furosemide also exerts vasodilatory effects. Furosemide is part of our Bio-X ™ Range. These products are aimed at life science researchers who need high quality ready-to-use products for assay development, screening or other R&D work. With a solubility datasheet and convenient vials, all of our Bio-X ™ products are in stock across our global warehouses for rapid delivery and ease of use.Formula:C12H11ClN2O5SPurity:Min. 95%Color and Shape:PowderMolecular weight:330.74 g/mol