Glycosciences
La glycosciences est l'étude des glucides et de leurs dérivés, ainsi que des interactions et des fonctions biologiques auxquelles ils participent. Ce domaine de recherche est crucial pour comprendre une grande variété de processus biologiques, y compris la reconnaissance cellulaire, la signalisation, la réponse immunitaire et le développement des maladies. La glycosciences a des applications importantes en biotechnologie, en médecine et dans le développement de nouveaux médicaments et thérapies. Chez CymitQuimica, nous proposons une large sélection de produits de haute qualité et pureté pour la recherche en glycosciences. Notre catalogue comprend des monosaccharides, des oligosaccharides, des polysaccharides, des glyconjugués et des réactifs spécifiques, conçus pour soutenir les chercheurs dans leurs études sur la structure, la fonction et les applications des glucides dans les systèmes biologiques. Ces ressources sont destinées à faciliter les découvertes scientifiques et les applications pratiques dans divers domaines des biosciences et de la médecine.
Sous-catégories appartenant à la catégorie "Glycosciences"
- Aminosucres(108 produits)
- Anticorps Glyco-Related(282 produits)
- Glycolipides(46 produits)
- Glycosaminoglycanes (GAGs)(55 produits)
- Glycosides(419 produits)
- Monosaccharides(6.622 produits)
- Oligosaccharides(3.682 produits)
- Polysaccharides(503 produits)
11041 produits trouvés pour "Glycosciences"
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4-(Methylnitrosamino)-1-(3-pyridyl)-1-butanol-N-b-D-glucuronide
CAS :<p>4-(Methylnitrosamino)-1-(3-pyridyl)-1-butanol-N-b-D-glucuronide is a glycosylated, modified sugar with a fluorinated methyl group. It is synthesized in the laboratory and does not occur naturally. The sugar moiety of this compound contains an oligosaccharide that consists of a complex carbohydrate, including saccharides, monosaccharides, and polysaccharides. This modification can be done by click chemistry or by other methods. 4-(Methylnitrosamino)-1-(3-pyridyl)-1-butanol-N-b-D-glucuronide is high purity and modification products are available upon request.</p>Formule :C16H23N3O8Degré de pureté :Min. 95%Masse moléculaire :385.37 g/mol4,7,8,9-Tetra-O-acetyl-N-acetyl-D-neuraminic acid methyl ester
CAS :<p>4,7,8,9-Tetra-O-acetyl-N-acetyl-D-neuraminic acid methyl ester is a modified form of sialic acid. This compound is a glycosylation product that has been modified with methyl groups and fluorine atoms. The fluorination of the molecule increases its stability and prevents it from being hydrolyzed by enzymes such as β-galactosidase. 4,7,8,9-Tetra-O-acetyl-N-acetyl-D-neuraminic acid methyl ester is often used in the synthesis of polysaccharides and oligosaccharides for medical purposes. This compound can be custom synthesized for research purposes or to meet special requirements.</p>Formule :C20H29NO13Degré de pureté :Min. 95%Couleur et forme :White to off-white solid.Masse moléculaire :491.44 g/molMethyl 3-acetamido-2-chloro-2,3-dideoxy-a-D-altropyranoside
CAS :<p>Methyl 3-acetamido-2-chloro-2,3-dideoxy-a-D-altropyranoside is a high purity and custom synthesis Glycosylation product. It is a synthetic sugar that is used in the modification of complex carbohydrates. Methyl 3-acetamido-2-chloro-2,3-dideoxy-a-D-altropyranoside can be synthesized by fluorination and methylation of glycosylates or saccharides.</p>Formule :C9H16ClNO5Degré de pureté :Min. 95%Masse moléculaire :253.68 g/molAllyl 6-o-allyl-α-D-galactopyranoside
CAS :<p>Allyl 6-o-allyl-α-D-galactopyranoside is a medicinal compound with potential anticancer properties. It is an analog of α-D-galactopyranoside and has been shown to inhibit the activity of protein kinases, which are enzymes involved in cell signaling and regulation. This inhibition can lead to apoptosis, or programmed cell death, in cancer cells. Allyl 6-o-allyl-α-D-galactopyranoside has been studied extensively in Chinese medicine as a potential inhibitor of tumor growth and has also been found in human urine. This compound holds great promise as a natural alternative for cancer treatment and warrants further investigation into its therapeutic potential.</p>Formule :C12H20O6Degré de pureté :Min. 95%Masse moléculaire :260.28 g/molMethyl 3,4-di-O-benzyl-a-D-mannopyranoside
CAS :<p>Methyl 3,4-di-O-benzyl-a-D-mannopyranoside is a synthetic compound that belongs to the class of oligosaccharides. It is a sugar that has a complex carbohydrate structure with a glycosylated and methylated sugar. The compound is custom synthesized and is used as a reagent in glycosylation reactions. Methyl 3,4-di-O-benzyl-a-D-mannopyranoside can be used for click modification of proteins, polypeptides, and carbohydrates.</p>Formule :C21H26O6Degré de pureté :Min. 95%Masse moléculaire :374.43 g/mol4-Aminophenyl 2,3,4-tri-O-acetyl-b-D-glucuronide methyl ester
CAS :<p>4-Aminophenyl 2,3,4-tri-O-acetyl-b-D-glucuronide methyl ester is an organic compound that belongs to the group of Modifications. It is a colorless solid with a melting point of about 200. °C. This product is used in the synthesis of oligosaccharides and carbohydrates. The molecular formula for 4-aminophenyl 2,3,4-tri-O-acetyl-b-D-glucuronide methyl ester is C8H14N2O5 and its molecular weight is 240.24 g/mol. The CAS Registry Number (RN) for this product is 25218-22-8 and its EINECS number is 249 3 578 - 7 .</p>Formule :C19H23NO10Degré de pureté :Min. 95%Masse moléculaire :425.39 g/molBenzyl 2,3,4,6-tetra-O-acetyl-b-D-glucopyranoside
CAS :<p>Benzyl 2,3,4,6-tetra-O-acetyl-b-D-glucopyranoside is a synthetic compound that is used as a reagent to modify oligosaccharides and polysaccharides. It is also used in the synthesis of complex carbohydrates. Benzyl 2,3,4,6-tetra-O-acetyl-b-D-glucopyranoside can be fluorinated to yield benzyl 4,6-(O)fluoro-(2R)-2,3,4,6 tetra -O acetyltetra -O acetyl b D glucopyranoside. This product has high purity with a CAS number of 10343-13-2.</p>Formule :C21H26O10Degré de pureté :Min. 95%Masse moléculaire :438.43 g/molEthyl 2,3,4-tri-O-benzyl-L-fucopyranoside
<p>Ethyl 2,3,4-tri-O-benzyl-L-fucopyranoside is a polysaccharide that is modified by the addition of benzyl groups to the hydroxyl group at C2. This modification increases the resistance of this compound to degradation by glycosidases and also prevents any undesired reactions with other saccharides. Ethyl 2,3,4-tri-O-benzyl-L-fucopyranoside is a custom synthesis that can be made in high purity and with high carbohydrate content. The CAS number for this compound is 61721–76–8.</p>Formule :C29H34O5Degré de pureté :Min. 95%Masse moléculaire :462.58 g/molD-Glucose 2-phosphate
CAS :<p>D-Glucose 2-phosphate (D-G6P) is a glycolysis intermediate that is generated by the enzyme phosphoglucose isomerase. It is necessary for the synthesis of glycogen and starch, as well as for the formation of glucose 6-phosphate in glycolysis. D-G6P has been shown to be an important substrate for enzymes involved in phosphate transfer. D-G6P also plays a role in mitochondrial function, as it can be converted to ATP by the enzyme pyruvate kinase. D-G6P has been shown to alter physiological effects in wild type strains of yeast and plants, as well as having disease activity against human serum.</p>Formule :C6H13O9PDegré de pureté :Min. 95 Area-%Couleur et forme :PowderMasse moléculaire :260.14 g/molMethyl 3,4-O-isopropylidene-a-D-galactopyranoside
CAS :<p>Methyl 3,4-O-isopropylidene-a-D-galactopyranoside is a white crystalline powder that is soluble in water. This product is used in the synthesis of complex carbohydrate and glycosylation. It has CAS No. 40269-01-0 and can be custom synthesized to meet your requirements. The purity of this product is over 99%.</p>Formule :C10H18O6Degré de pureté :Min. 95%Masse moléculaire :234.25 g/mol3,4-Di-O-acetyl-D-glucuronal methyl ester
CAS :<p>3,4-Di-O-acetyl-D-glucuronal methyl ester is a sugar that belongs to the group of complex carbohydrates. It has a CAS number of 34296-99-6 and can be synthesized by Click modification, fluorination, glycosylation, or methylation. This product is used as an intermediate in the synthesis of oligosaccharides or monosaccharides. In addition, it can be used for the preparation of saccharide derivatives with various substituents. 3,4-Di-O-acetyl-D-glucuronal methyl ester has high purity and is custom synthesized to meet your requirements.</p>Formule :C11H14O7Degré de pureté :Min. 95%Masse moléculaire :258.22 g/mol4,5,7-Tri-O-acetyl-2,6-anhydro-3-deoxy-D-lyxo-hept-2-enonamide
CAS :<p>4,5,7-Tri-O-acetyl-2,6-anhydro-3-deoxy-D-lyxo-hept-2-enonamide is a carbohydrate that belongs to the group of oligosaccharides. It is a synthetic compound that has been modified with fluorination and methylation. This compound has been synthesized with high purity and custom synthesis. The modification process includes glycosylation and click chemistry.</p>Formule :C13H17NO8Degré de pureté :Min. 95%Masse moléculaire :315.28 g/molD-(+)-Melezitose dihydrate
CAS :<p>D-(+)-Melezitose dihydrate is a potent inhibitor of cancer cell growth. It has been shown to inhibit the proliferation of Chinese hamster ovary cells and human bladder cancer cells in vitro. D-(+)-Melezitose dihydrate is also found in urine samples from cancer patients, suggesting that it may be a potential biomarker for cancer diagnosis. This compound has been identified as an analog of indirubin, which is known to have anti-tumor properties. D-(+)-Melezitose dihydrate has been shown to induce apoptosis in cancer cells by inhibiting protein kinases, including the kinase inhibitors and tumor suppressor proteins. Additionally, this compound has demonstrated anticancer activity against a variety of tumors, making it a promising candidate for future cancer therapies.</p>Formule :C18H36O18Degré de pureté :Min. 95%Masse moléculaire :540.5 g/mol1,6-Anhydro-3-O-benzyl-b-L-idopyranose
CAS :<p>1,6-Anhydro-3-O-benzyl-b-L-idopyranose is an oligosaccharide in which the aldehyde group of the original sugar has been modified. It is a complex carbohydrate that is synthesized by the fluorination of glucose with 1,6-dichlorohexane and benzyl bromide. The product is purified by crystallization and recrystallization to obtain a high purity. It is a monosaccharide sugar that can be used as a starting material for modification or synthesis of other carbohydrates.</p>Formule :C13H16O5Degré de pureté :Min. 95%Masse moléculaire :252.26 g/molAllyl 2,3,4,6-tetra-O-acetyl-α-D-mannopyranoside
CAS :<p>Allyl 2,3,4,6-tetra-O-acetyl-a-D-mannopyranoside is a glycosylated monosaccharide with a complex carbohydrate structure. It has the CAS number 119111-31-8 and can be synthesized from allyl alcohol and acetaldehyde. This compound has been modified with fluorination, saccharide modification, and methylation. Allyl 2,3,4,6-tetra-O-acetyl-a-D-mannopyranoside is an oligosaccharide that can be custom synthesized to meet your needs.</p>Formule :C17H24O10Degré de pureté :Min. 95%Couleur et forme :PowderMasse moléculaire :388.37 g/molBlood group A type I tetrasaccharide
<p>GalNAca1-3(Fuca1-2)Galb1-3GlcNAc</p>Formule :C28H48N2O20Degré de pureté :Min. 95%Masse moléculaire :732.68 g/molBlood Group A type II linear trisaccharide
CAS :<p>GalNAca1-3Galb1-4GlcNAc</p>Formule :C22H38N2O16Degré de pureté :Min. 95%Masse moléculaire :586.54 g/mol1,2-O-Ethylidene b-D-mannopyranose
CAS :<p>1,2-O-Ethylidene b-D-mannopyranose is a complex carbohydrate that is synthesized from the modification of mannose with 1,2-O-ethylidene b-D-mannopyranose. This modification can be accomplished by either methylation or glycosylation. Modification of mannose with 1,2-O-ethylidene b-D-mannopyranose has been shown to increase the stability of the molecule and improve its resistance to degradation. The methylation of mannose with 1,2-O-ethylidene b-D-mannopyranose has been shown to produce a variety of derivatives that may have potential applications in drug design and cancer treatment. This complex carbohydrate is an important component in many saccharides and polysaccharides. It has also been used as a fluorinating agent in organic synthesis.</p>Formule :C8H14O6Degré de pureté :Min. 95%Masse moléculaire :206.2 g/mol3',4'-O-Carbonyl-6,6'-di-O-tert-butyldiphenylsilyl lactal
CAS :<p>3',4'-O-Carbonyl-6,6'-di-O-tert-butyldiphenylsilyl lactal is a synthetic oligosaccharide that has been modified with a click modification. It is comprised of 3 different monosaccharides, one saccharide, and one carbonyl group. This carbohydrate is synthesized from the natural sugar D-ribose, which is modified with an O-tert-butyldiphenylsilyl lactal. The synthesis begins with the addition of a methyl group to the sugar's primary hydroxyl group. Then the sugar is reacted with fluorine gas to form an ether bond between the sugar's primary hydroxyl and its secondary hydroxyl. The final step in the synthesis involves glycosylation of the terminal hydroxyl groups on each monosaccharide.</p>Formule :C45H54O10Si2Degré de pureté :Min. 95%Masse moléculaire :811.08 g/mol
