
Toxinas
As toxinas são substâncias venenosas produzidas por organismos vivos que podem causar danos a outros organismos. A pesquisa sobre toxinas inclui o estudo de seus mecanismos de ação, efeitos em sistemas biológicos e usos potenciais na medicina e na agricultura. Este campo também envolve o desenvolvimento de antídotos e tratamentos para a exposição a toxinas. Na CymitQuimica, fornecemos compostos tóxicos de alta qualidade para apoiar a pesquisa em toxicologia, farmacologia e campos relacionados, garantindo manuseio preciso e seguro em seus experimentos.
Produtos da "Toxinas"
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Finasteride, EP grade
CAS:Fórmula:C23H36N2O2Pureza:≤ 0.1%Cor e Forma:White to almost white crystalline powderPeso molecular:372.54Estradiol
CAS:Fórmula:C18H24O2Pureza:≥ 97.0% (dried basis)Cor e Forma:White or off-white powderPeso molecular:272.39Convallatoxin
CAS:Convallatoxin is a cardiac glycoside, which is derived from the plant Convallaria majalis, commonly known as lily of the valley. This compound operates by specifically inhibiting the Na+/K+-ATPase enzyme, a crucial membrane-bound ion pump that maintains the electrochemical gradients of sodium and potassium ions across the cell membrane. Inhibition of this enzyme leads to an increase in intracellular sodium levels, subsequently affecting calcium ion exchange and resulting in enhanced cardiac contractility. The primary applications of Convallatoxin are in studies related to cardiac physiology and potential therapeutic interventions for heart failure and certain arrhythmias. Due to its ability to modulate cardiac output and rhythm, it serves as a valuable tool for investigating electrolyte transport mechanisms and their impact on cardiac muscle function. Scientists leverage its specific action on Na+/K+-ATPase to explore new drug targets and to elucidate the biochemical pathways associated with cardiac glycosides. However, its potent effects necessitate careful handling and precise dosing in research settings to avoid toxicity.Fórmula:C29H42O10Pureza:Min. 95%Cor e Forma:PowderPeso molecular:550.64 g/molFinasteride, USP grade
CAS:Fórmula:C23H36N2O2Pureza:≤ 0.5%Cor e Forma:White or almost white powderPeso molecular:372.54Finasteride
CAS:Fórmula:C23H36N2O2Pureza:98.5 - 101.0 % (anhydrous basis)Cor e Forma:White to off-white crystalline powderPeso molecular:372.54Capecitabine, EP grade
CAS:Fórmula:C15H22FN3O6Pureza:98.0 - 102.0 % (anhydrous substance)Cor e Forma:White or almost white powderPeso molecular:359.35Hirudin from leeches
CAS:Hirudin is a potent anticoagulant protein, which is a naturally occurring compound sourced from the salivary glands of medicinal leeches, specifically *Hirudo medicinalis*. It functions by directly inhibiting thrombin, a key enzyme in the blood coagulation process, thereby preventing fibrin formation and subsequent clot development. Hirudin achieves its effects by binding to both the active site and the exosite of thrombin, effectively neutralizing its coagulative activity. This compound has been widely utilized in various medical and research applications. Clinically, it is employed in settings where anticoagulation is critical, such as in preventing thrombosis during surgeries or in patients with heparin-induced thrombocytopenia. Additionally, Hirudin is a valuable tool in biochemical research, providing insights into thrombin-mediated pathways. Its ability to offer precise inhibition of thrombin makes it an indispensable resource for detailed study of coagulation processes and the development of new anticoagulant therapies.Fórmula:C287H440N80O110S6Pureza:Min. 95%Peso molecular:6 g/molOxaliplatin
CAS:Fórmula:C8H14N2O4PtPureza:98.0 - 102.0 % (dried basis)Cor e Forma:White to almost white crystalline powderPeso molecular:397.29Isopimaric acid
CAS:Isopimaric acid is a natural diterpene resin acid, which is derived primarily from the oleoresin of coniferous trees, specifically from the genus Pinus. It is a constituent of the resin exuded by pine trees and is often obtained through the distillation or extraction of pine resin. The mode of action of isopimaric acid is multifaceted, particularly in its antimicrobial properties. It disrupts microbial cell membranes and inhibits the growth of various bacterial and fungal species, making it a significant compound in the natural defense system of trees. Furthermore, it serves as a precursor for chemical reactions, acting as a key intermediate in the synthesis of various compounds. Uses and applications of isopimaric acid are diverse within scientific research and industrial contexts. It is utilized in the synthesis of pharmaceuticals and agrochemicals due to its biological activity. Moreover, it serves in the production of varnishes and adhesives due to its resinous properties. Researchers explore its potential in developing new antimicrobial agents, highlighting its significance in the fields of materials science and bio-organic chemistry.Fórmula:C20H30O2Pureza:(%) Min. 98%Cor e Forma:PowderPeso molecular:302.45 g/molProgesterone
CAS:Fórmula:C21H30O2Pureza:98.0 - 102.0 % (dried basis)Cor e Forma:White to off-white powderPeso molecular:314.46Sorafenib
CAS:Fórmula:C21H16ClF3N4O3Pureza:≥ 95.0%Cor e Forma:White, off-white or light-yellow solidPeso molecular:464.83Destruxin A
CAS:Destruxin A is a cyclodepsipeptide, which is a specialized secondary metabolite originating from the entomopathogenic fungus, Metarhizium anisopliae. This bioactive compound exerts its effects through a multifaceted mode of action, primarily disrupting ion channels and perturbing cellular homeostasis within insect hosts. The interference with calcium and potassium ion fluxes leads to paralysis and ultimately death of the targeted pests, making it an effective biocontrol agent. Destruxin A holds significant potential in integrated pest management programs, particularly in agriculture, where it offers a sustainable alternative to synthetic chemical pesticides. Its specificity to insect physiology ensures minimal impacts on non-target organisms, promoting ecological balance. Studies continue to explore its application spectrum and effectiveness, seeking to optimize its deployment in various pest-infested environments, including crops and stored products.Fórmula:C29H47N5O7Pureza:Min. 95%Cor e Forma:PowderPeso molecular:577.71 g/molThalidomide
CAS:Fórmula:C13H10N2O4Pureza:≤ 0.1%Cor e Forma:White to off-white powderPeso molecular:258.23Letrozole
CAS:Fórmula:C17H11N5Pureza:≥ 98.0% (anhydrous basis)Cor e Forma:White to off-white powderPeso molecular:285.30Aflatoxicol
CAS:Aflatoxicol is a derivative of aflatoxin, which is a type of mycotoxin. It is derived from the biochemical transformation of aflatoxins, predominantly by metabolic reduction, often sourced from specific fungi such as *Aspergillus flavus* and *Aspergillus parasiticus*. The mode of action of aflatoxicol involves its interaction with cellular macromolecules, causing disruption and potentially leading to toxic effects, similar to its parent compound. It is known to cause DNA adduct formation, ultimately interfering with genetic integrity. The uses and applications of aflatoxicol are primarily found in scientific research settings, particularly in toxicology and biochemistry. It serves as a critical compound in the study of carcinogenic processes and the biotransformation pathways of aflatoxins. By investigating aflatoxicol, scientists gain insights into the mechanisms of aflatoxin toxicity and its biological consequences in living organisms. This research can be pivotal in understanding human health risks and in developing strategies to mitigate exposure in agricultural and food safety contexts.Pureza:Min. 95%