
Cyclodextrins
Cyclodextrins are cyclic oligosaccharides derived from starch, known for their unique structure with a hydrophilic exterior and a hydrophobic interior. This enables them to form host-guest complexes with various hydrophobic molecules, improving solubility and stability. Widely utilized in pharmaceuticals, food industries, and environmental applications, our cyclodextrins at CymitQuimica are specially tailored for encapsulation, drug delivery, and enhancing the performance of active ingredients in research and product development.
Products of "Cyclodextrins"
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1,1,1-Tris[4-(per-O-methyl-α-cyclodextrin-6-yloxy)phenyl]ethane
Formula:C179H294O90Color and Shape:White to Almost white powder to crystalMolecular weight:3,886.233,6-Di-tert-butylmethylsilyl-γ-cyclodextrin
This gamma-cyclodextrin (γ-CD) derivative is a modified cyclic oligosaccharide composed of eight glucose units, featuring a larger cavity size than α- and β-cyclodextrins. This structural characteristic allows γ-CDs to form inclusion complexes with a wider range of guest molecules, making it particularly versatile in various industries. In the food sector, it is used as a carrier and stabilizer for flavors, fat-soluble vitamins, and polyunsaturated fatty acids, protecting volatile compounds from evaporation. In pharmaceuticals, it enhances the solubility and bioavailability of poorly water-soluble drugs and, thanks to its larger ring size, allows for the encapsulation of larger molecules or even entire drug molecules. γ-CDs and derivatives are also used for environmental remediation and, in analytical chemistry, for the extraction and concentration of target substances.Formula:C144H304O40SI16Purity:Min. 95%Molecular weight:4,738.47 g/molMono-(6-(diethylenetriamine)-6-deoxy)-β-Cyclodextrin
CAS:Please enquire for more information about Mono-(6-(diethylenetriamine)-6-deoxy)-β-Cyclodextrin including the price, delivery time and more detailed product information at the technical inquiry form on this pageFormula:C46H81N3O34Purity:Min. 95%Molecular weight:1,220.1 g/mol2,3-Di-O-allyl-γ-cyclodextrin
This gamma-cyclodextrin (γ-CD) derivative is a modified cyclic oligosaccharide composed of eight glucose units, featuring a larger cavity size than α- and β-cyclodextrins. This structural characteristic allows γ-CDs to form inclusion complexes with a wider range of guest molecules, making it particularly versatile in various industries. In the food sector, it is used as a carrier and stabilizer for flavors, fat-soluble vitamins, and polyunsaturated fatty acids, protecting volatile compounds from evaporation. In pharmaceuticals, it enhances the solubility and bioavailability of poorly water-soluble drugs and, thanks to its larger ring size, allows for the encapsulation of larger molecules or even entire drug molecules. γ-CDs and derivatives are also used for environmental remediation and, in analytical chemistry, for the extraction and concentration of target substances.Formula:C96H144O40Purity:Min. 95%Molecular weight:1,938.15 g/mol2,6-Di-O-methyl-β-cyclodextrin
CAS:Formula:C56H98O35Purity:98%Color and Shape:SolidMolecular weight:1331.3563199999994zeta-Cyclodextrin
CAS:Zeta-cyclodextrin (ζ-CD) consists of 11 glucose units. Its larger cavity size offers potential for encapsulating larger guest molecules or forming more complex inclusion compounds.Formula:C66H110O55Purity:Min. 95%Molecular weight:1,783.55 g/molMono-2-O-(p-toluenesulfonyl)-β-cyclodextrin
CAS:Formula:C49H76O37SPurity:>97.0%(HPLC)Color and Shape:White to Almost white powder to crystalMolecular weight:1,289.172,3-Di-O-acetyl-a-cyclodextrin
Alpha-cyclodextrin (α-CD) derivative with a hydrophilic exterior and lipophilic cavity (smaller than β-CDs and γ-CDs) to allocate certain guest molecules. This structural characteristic enables applications in molecular encapsulation, solubility enhancement, and stabilization across multiple industries. In pharmaceuticals, it serves as a drug delivery vehicle, enhancing the bioavailability and stability of active ingredients. The food industry utilizes it as a stabilizer for flavors, colors, and nutrients, as well as a functional ingredient for its effects on lipid metabolism. In cosmetics, it acts as a complex agent for fragrances and active components. Its applications extend to analytical chemistry for chiral separation and to materials science for developing smart materials and nanosystems.Formula:C60H84O42Purity:Min. 95%Molecular weight:1,477.28 g/molSuccinyl-(2-hydroxypropyl)-a-cyclodextrin
Alpha-cyclodextrin (α-CD) derivative with a hydrophilic exterior and lipophilic cavity (smaller than β-CDs and γ-CDs) to allocate certain guest molecules. This structural characteristic enables applications in molecular encapsulation, solubility enhancement, and stabilization across multiple industries. In pharmaceuticals, it serves as a drug delivery vehicle, enhancing the bioavailability and stability of active ingredients. The food industry utilizes it as a stabilizer for flavors, colors, and nutrients, as well as a functional ingredient for its effects on lipid metabolism. In cosmetics, it acts as a complex agent for fragrances and active components. Its applications extend to analytical chemistry for chiral separation and to materials science for developing smart materials and nanosystems.Purity:Min. 95%iota-Cyclodextrin
CAS:Iota-cyclodextrin (ι-CD) contains 14 glucose units. This cyclodextrin has potential applications in host-guest chemistry, particularly for large molecules or assemblies.Formula:C84H140O70Purity:Min. 95%Molecular weight:2,269.97 g/molCarboxymethyl-gamma-cyclodextrin sodium salt
This gamma-cyclodextrin (γ-CD) derivative is a modified cyclic oligosaccharide composed of eight glucose units, featuring a larger cavity size than α- and β-cyclodextrins. This structural characteristic allows γ-CDs to form inclusion complexes with a wider range of guest molecules, making it particularly versatile in various industries. In the food sector, it is used as a carrier and stabilizer for flavors, fat-soluble vitamins, and polyunsaturated fatty acids, protecting volatile compounds from evaporation. In pharmaceuticals, it enhances the solubility and bioavailability of poorly water-soluble drugs and, thanks to its larger ring size, allows for the encapsulation of larger molecules or even entire drug molecules. γ-CDs and derivatives are also used for environmental remediation and, in analytical chemistry, for the extraction and concentration of target substances.Formula:C54H86O46·xNaPurity:Min. 95%Color and Shape:PowderMolecular weight:1,471.23 g/molε-Cyclodextrin
CAS:Epsilon-cyclodextrin (ε-CD) consists of 10 glucose units. Its larger cavity size offers potential for encapsulating larger guest molecules or forming more complex inclusion compounds.Formula:C60H100O50Purity:Min. 95%Molecular weight:1,621.41 g/mol(2-Hydroxypropyl)-gamma-cyclodextrin
CAS:This gamma-cyclodextrin (γ-CD) derivative is a modified cyclic oligosaccharide composed of eight glucose units, featuring a larger cavity size than α- and β-cyclodextrins. This structural characteristic allows γ-CDs to form inclusion complexes with a wider range of guest molecules, making it particularly versatile in various industries. In the food sector, it is used as a carrier and stabilizer for flavors, fat-soluble vitamins, and polyunsaturated fatty acids, protecting volatile compounds from evaporation. In pharmaceuticals, it enhances the solubility and bioavailability of poorly water-soluble drugs and, thanks to its larger ring size, allows for the encapsulation of larger molecules or even entire drug molecules. γ-CDs and derivatives are also used for environmental remediation and, in analytical chemistry, for the extraction and concentration of target substances.Purity:98 To 102%Color and Shape:Powder6-O-a-Maltosyl-b-cyclodextrin
CAS:This beta-cyclodextrin (β-CD) derivative is a functionalized cyclic oligosaccharide composed of seven glucose units, characterized by a hydrophilic exterior and a lipophilic cavity (bigger than α-CD and smaller than γ-CDs), which allows it to encapsulate various guest molecules. This structural feature facilitates its use in multiple applications, including pharmaceuticals, food enhancement, and cosmetics. In the pharmaceutical industry, it enhances the solubility and stability of poorly water-soluble drugs, improving their bioavailability and efficacy while also masking unpleasant tastes. The food sector utilizes it as a stabilizer for flavors, colors, and nutrients, extending shelf life by protecting sensitive ingredients from degradation. In cosmetics, it serves as a complexing agent for fragrances and active components, ensuring their stability and controlled release. Its use expands to many other fields, including nanotechnology for drug delivery systems, environmental remediation for extracting organic pollutants, textiles for slow-release fragrances, and analytical chemistry for chiral separation.Formula:C54H90O45Purity:Min. 95%Color and Shape:White PowderMolecular weight:1,459.27 g/molMono-2-O-(p-toluenesulfonyl)-γ-cyclodextrin
CAS:Formula:C55H86O42SPurity:>95.0%(HPLC)Color and Shape:White to Almost white powder to crystalMolecular weight:1,451.31Monoacetyl-b-cyclodextrin
This beta-cyclodextrin (β-CD) derivative is a functionalized cyclic oligosaccharide composed of seven glucose units, characterized by a hydrophilic exterior and a lipophilic cavity (bigger than α-CD and smaller than γ-CDs), which allows it to encapsulate various guest molecules. This structural feature facilitates its use in multiple applications, including pharmaceuticals, food enhancement, and cosmetics. In the pharmaceutical industry, it enhances the solubility and stability of poorly water-soluble drugs, improving their bioavailability and efficacy while also masking unpleasant tastes. The food sector utilizes it as a stabilizer for flavors, colors, and nutrients, extending shelf life by protecting sensitive ingredients from degradation. In cosmetics, it serves as a complexing agent for fragrances and active components, ensuring their stability and controlled release. Its use expands to many other fields, including nanotechnology for drug delivery systems, environmental remediation for extracting organic pollutants, textiles for slow-release fragrances, and analytical chemistry for chiral separation.Purity:(%) Min. 95%Color and Shape:Powder2,6-Dimethyl-a-cyclodextrin >70%
CAS:Alpha-cyclodextrin (α-CD) derivative with a hydrophilic exterior and lipophilic cavity (smaller than β-CDs and γ-CDs) to allocate certain guest molecules. This structural characteristic enables applications in molecular encapsulation, solubility enhancement, and stabilization across multiple industries. In pharmaceuticals, it serves as a drug delivery vehicle, enhancing the bioavailability and stability of active ingredients. The food industry utilizes it as a stabilizer for flavors, colors, and nutrients, as well as a functional ingredient for its effects on lipid metabolism. In cosmetics, it acts as a complex agent for fragrances and active components. Its applications extend to analytical chemistry for chiral separation and to materials science for developing smart materials and nanosystems.Formula:C48H84O30Purity:Min. 95%Color and Shape:PowderMolecular weight:1,141.16 g/molβ-Cyclodextrin, 6A-amino-6A-deoxy-
CAS:Formula:C42H71NO34Purity:98%Color and Shape:SolidMolecular weight:1133.9994399999998