Glicociência
Subcategorias de "Glicociência"
- Amino açúcares(108 produtos)
- Anticorpos Glico-Relacionados(282 produtos)
- Glicolípidos(46 produtos)
- Glicosaminoglicanos (GAGs)(55 produtos)
- Glicosídeos(419 produtos)
- Monossacáridos(6.616 produtos)
- Oligossacarídeos(3.718 produtos)
- Polissacáridos(505 produtos)
Foram encontrados 11017 produtos de "Glicociência"
1,2-Dideoxy-5-O-DMT-D-ribose
CAS:1,2-Dideoxy-5-O-DMT-D-ribose is a methylation inhibitor that inhibits the transfer of a methyl group from S-adenosylmethionine to a substrate. This modification can be found in many biological systems, including DNA and RNA. It is also used as an intermediate in the synthesis of other compounds such as oligosaccharides and polysaccharides. 1,2-Dideoxy-5-O-DMT-D-ribose has been shown to inhibit the growth of bacteria by inhibiting bacterial cell wall synthesis. It is believed to work by binding to glycosidic bonds in bacterial cell walls, preventing the formation of new bonds and therefore inhibiting cell wall biosynthesis.
1,2 - Dideoxy - 5 - O - DMT - D - ribose can be used for fluorination reactions with various types of compounds, including sugars and other complex carbohydrates.Fórmula:C26H28O5Pureza:Min. 97 Area-%Cor e Forma:White PowderPeso molecular:420.5 g/molD-Rhamnose
CAS:Chiral-pool sugar used to mirror syntheses based on natural L-RhaFórmula:C6H12O5Pureza:Min. 97 Area-%Cor e Forma:White PowderPeso molecular:164.16 g/molSalicylic acid ethyl ester b-D-glucuronide
The synthesis of this compound is accomplished by a two-step process. First, the methylation of salicylic acid ethyl ester with sodium methoxide in methanol followed by the addition of b-D-glucuronide to afford the desired product. This compound is an example of an oligosaccharide with a complex carbohydrate structure. It can be modified to contain fluorine atoms or other functional groups and it has been shown to be synthesized from monosaccharides. The sugar chain can include a variety of saccharides, such as glucose, galactose, or fructose. The synthesis of this compound is accomplished by a two-step process. First, the methylation of salicylic acid ethyl ester with sodium methoxide in methanol followed by the addition of b-D-glucuronide to afford the desired product. This compound is an example of an oligosaccharide with a complex carbohydrate structure. It canFórmula:C15H18O9Pureza:Min. 95%Peso molecular:342.3 g/mol(2R, 3S, 4R, 5S) -2-acetoxymethyl-4-acetoxy - 5- azido- 1,3-di-O-benzyl- piperidine
CAS:(2R, 3S, 4R, 5S) -2-acetoxymethyl-4-acetoxy - 5- azido- 1,3-di-O-benzyl- piperidine is a synthetic carbohydrate modified with fluorination and methylation. It is an oligosaccharide that exhibits a complex carbohydrate structure. This substance is a monosaccharide with high purity and custom synthesis. It has been glycosylated and click modification has been performed on it.Fórmula:C24H28N4O5Pureza:Min. 95%Peso molecular:452.5 g/molD-Mannose
CAS:Used to differentiate microorganisms based on their metabolic properties.Fórmula:C6H12O6Pureza:Min. 99.5 Area-%Peso molecular:180.16 g/molRef: 3D-M-1000
1kgA consultar50gA consultar5kgA consultar500gA consultar2500gA consultar-Unit-kgkgA consultar(2R, 3S, 4S) -3- Fluoro- 4- (hydroxymethyl) - N- methyl- 1- (phenylmethyl) -2- azetidinecarboxamide
CAS:(2R, 3S, 4S) -3- Fluoro- 4- (hydroxymethyl) - N- methyl- 1- (phenylmethyl) -2- azetidinecarboxamide is an oligosaccharide that can be synthesized by glycosylation and fluorination. It is a high purity chemical with a custom synthesis and sugar modification. This product is synthesized by Click modification and methylation. The synthesis of this product starts with glycogen which is modified to produce monosaccharides and saccharides. These sugars are then further modified to produce the desired product. As an oligosaccharide, it has many applications including as a sugar for complex carbohydrate research.Pureza:Min. 95%1,2,3,4-Tetra-O-benzyl-6-O-tert-butyldiphenylsilyl-b-D-galactopyranose
1,2,3,4-Tetra-O-benzyl-6-O-tert-butyldiphenylsilyl-b-D-galactopyranose is a custom synthesis of an oligosaccharide. It is a complex carbohydrate that is composed of a glycosylated polysaccharide with a molecular weight of 676. It has been modified by methylation and fluorination (a click modification). The carbohydrate has been synthesized using high purity, fluoroquinolone resistant reagents.Fórmula:C50H54O6SiPureza:Min. 95%Peso molecular:779.07 g/molMethyl 4-O-(b-D-galactopyranosyl)-D-glucopyranoside
CAS:Methyl 4-O-(b-D-galactopyranosyl)-D-glucopyranoside is a cell death inducer that induces apoptosis in cancer cells. It is an analog of the natural product bryostatin 1, which has been shown to induce apoptosis in cancer cells by binding to a protein called CD97. This compound induces apoptosis by binding to CD97, inhibiting the formation of ATP, and activating caspases. In vitro studies have shown that methyl 4-O-(b-D-galactopyranosyl)-D-glucopyranoside induces apoptosis in mouse lymphoma cells and human leukemia cells.
Fórmula:C13H24O11Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:356.32 g/mol6-Deoxy-L-tallitol
6-Deoxy-L-tallitol is a sugar that is synthesized from the natural sugar, L-taloheptulose. This product is custom synthesized and can be modified to suit the needs of the customer. It can be fluorinated, glycosylated, or methylated as required. 6-Deoxy-L-tallitol can be used in a variety of applications such as pharmaceuticals, agrochemicals, and food products. This product has a CAS number, Oligosaccharide, Monosaccharide, saccharide Carbohydrate, complex carbohydrate.Pureza:Min. 95%Medicagenic acid 3,28-di-O-glucoside
CAS:Medicagenic acid 3,28-di-O-glucoside is a synthetic compound that is the product of a custom synthesis. It is a sugar with 1,2-linked glucose units. Medicagenic acid 3,28-di-O-glucoside is an intermediate in the synthesis of glycoconjugates. Medicagenic acid 3,28-di-O-glucoside can be modified to produce saccharides with various properties and functions. This compound has been modified by fluorination, methylation and click chemistry to produce medicagenic acid 3,28-di-O-[(2-(4′-[N′-(3′,5′'-dimethoxytrityl)-3H]thiophenyl)carbonyl]-6′-(4′-[N′-(3',5'-dimethoxytrityl)-3H]thiophenyl)methyl] glucopyranoside.Fórmula:C42H66O16Pureza:Min. 95%Peso molecular:826.96 g/molPeonidin-3-O-arabinoside chloride
CAS:Peonidin-3-O-arabinoside chloride is a flavonol glycoside that is found in the plant peony and inhibits lipid absorption. It has inhibitory properties on fat absorption in vitro. Peonidin-3-O-arabinoside chloride also inhibits the activity of enzymes that break down dietary fats, such as pancreatic lipase, thereby preventing fat absorption. This compound has been shown to lower serum cholesterol levels and reduce blood pressure in vivo human trials. Peonidin-3-O-arabinoside chloride is extracted from the bark of the tree species Paeonia suffruticosa and is used as an ingredient in some weight loss supplements.Fórmula:C21H21O10·ClPureza:Min. 95%Cor e Forma:White Off-White PowderPeso molecular:468.84 g/mol2,3,4,6-Tetra-O-pivaloyl-b-D-galactopyranosyl amine
CAS:2,3,4,6-Tetra-O-pivaloyl-b-D-galactopyranosyl amine is a glycosylated monosaccharide with four pivaloyl groups. It is an important component of the glycoconjugate family and has been used in research as a model for glycoprotein synthesis. This compound is synthesized from 2,3,4,6-tetra-O-pivaloylglucose through the use of Click chemistry and fluorination. The 2,3,4,6-Tetra-O-pivaloylglucose can be modified to produce a variety of sugar derivatives including methylated sugars and polysaccharides. This product is custom synthesized to meet customer specifications. 2,3,4,6-Tetra-O-pivaloylglucose can be obtained by reacting 2 equivalents of triacetinFórmula:C26H45NO9Pureza:Min. 95%Cor e Forma:PowderPeso molecular:515.64 g/molMan-5 N-Glycan
CAS:Man-5 N-glycan is a glycan that is synthesized by the enzyme mannosyltransferase. This glycan contains five mannose residues, one galactose residue, and one N-acetylglucosamine residue. The Man-5 N-glycan is found in eukaryotes, which are organisms whose cells have nuclei and membrane bound organelles. It is often found on the surface of cells or in secretions such as mucus or saliva. Man-5 N-Glycans are involved in cell signaling and may play a role in bladder cancer development. They are also used to generate monoclonal antibodies for diagnostic purposes.
Fórmula:C46H78N2O36Pureza:Min. 90.00%Cor e Forma:PowderPeso molecular:1,235.1 g/mol2- C- (Hydroxymethyl) - 2, 3- O-isopropylidene)-D- ribose
2-C-(Hydroxymethyl)-2,3-O-isopropylidene)-D-ribose is a sugar that is an important component of glycosylation. It can be used as a monosaccharide or as part of a larger sugar molecule such as an oligosaccharide or polysaccharide. 2-C-(Hydroxymethyl)-2,3-O-isopropylidene)-D-ribose can be modified by either methylation, fluorination, click modification, saccharide modification, or custom synthesis. This product has high purity and can be custom synthesized to meet your specifications.Pureza:Min. 95%Propyl b-D-glucuronide
CAS:Propyl b-D-glucuronide is a synthetic compound that belongs to the family of carbohydrates. It has a fluorinated hydroxyl group at the C3 position and an esterified carboxylic acid at the C1 position. This compound can be used as a building block for oligosaccharides and polysaccharides, which are complex carbohydrates. Propyl b-D-glucuronide is soluble in water and has a molecular weight of 176.Fórmula:C9H16O7Pureza:Min. 95%Cor e Forma:Tan To Brown SolidPeso molecular:236.22 g/molBenzyl-alpha-S-GalNAc
CAS:Please enquire for more information about Benzyl-alpha-S-GalNAc including the price, delivery time and more detailed product information at the technical inquiry form on this page
Fórmula:C15H21NO5SPureza:Min. 98 Area-%Peso molecular:327.4 g/mol1,2,3-Tri-O-acetyl-5-deoxy-b-D-ribofuranose
CAS:1,2,3-Tri-O-acetyl-5-deoxy-b-D-ribofuranose is a fluoropyrimidine prodrug. It can be converted to 5-fluorocytosine in vivo and has been shown to have antitumor properties. The positron emission from 1,2,3-triacetyl-5-deoxyribofuranose is used as a radiotracer for colorectal cancer.Fórmula:C11H16O7Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:260.24 g/molChondroitin sulfate A sodium salt - Average MW 10,000 - 30,000
CAS:The disaccharide repeating unit of chondroitin sulphate consists of N-acetyl galactosamine sulphate linked β1,4 to glucuronic acid. Each monosaccharide may be left unsulphated, sulphated once, or sulphated twice. The most common pattern has the hydroxyl groups of the 4 and 6 positions of the N-acetyl-galactosamine sulphated, with some chains having the position 2 of the glucuronic acid sulphated.Pureza:Min. 90%Cor e Forma:White Off-White Powder4-Formylphenyl 2-acetamido-2-deoxy-b-D-glucopyranoside
CAS:This product is a custom synthesis of a complex carbohydrate. It has the CAS number 135608-48-9, and is a fluorinated saccharide with an acetamide group in the 4-position. It is synthesized from 2,3-dihydroxybenzoic acid and methyl bromoacetate, which are reacted to form the mesylate ester. This product can be modified by methylation or glycosylation to produce desired derivatives. The purity of this compound is high, with no contaminants detected.Fórmula:C15H19NO7Pureza:Min. 95%Cor e Forma:PowderPeso molecular:325.31 g/mol1-S-Acetyl-2-acetamido-3-O-(2,3,4,6-tetra-O-benzoyl-β-D-galactopyranosyl)-2-deoxy-D-thiogalactopyranose
1-S-Acetyl-2-acetamido-3-O-(2,3,4,6-tetra-O-benzoyl-b-D-galactopyranosyl)-2-deoxy--D thiogalactopyranose is a custom synthesis of a complex carbohydrate. It is an Oligosaccharide that has been modified with methylation and glycosylation. This product is available in high purity and has been fluorinated for synthetic purposes.Fórmula:C44H43NO15SPureza:Min. 95%Peso molecular:857.88 g/mol5-Deoxy-5-fluoro-1,2-O-isopropylidene-D-iduronic acid-3,6 lactone
5-Deoxy-5-fluoro-1,2-O-isopropylidene-D-iduronic acid is a custom synthesis of oligosaccharide. It is a glycosylation that has been modified with fluorination, methylation, and click modification. This complex carbohydrate has an CAS number. The molecular weight of this polysaccharide is not determined. 5D5FIA3L is a saccharide sugar that has the ability to form glycosidic bonds with other saccharides and proteins in the body. This property makes it an important component in the human diet as well as in biochemistry and structural biology research.Pureza:Min. 95%Deferiprone 3-O-β-D-glucuronide
CAS:Deferiprone 3-O-b-D-glucuronide is a modification of deferiprone. It is synthesized by methylation, glycosylation, and polysaccharide modification with fluorine. Deferiprone 3-O-b-D-glucuronide is monosaccharide in nature and has high purity and custom synthesis.Fórmula:C13H17NO8Pureza:Min. 95%Cor e Forma:Light (Or Pale) Yellow SolidPeso molecular:315.28 g/mol2-Acetamido-2-deoxy-3-O-(β-D-galactopyranosyl)-α-D-galactopyranosyl-1-O-L-serine
CAS:2-Acetamido-2-deoxy-3-O-(β-D-galactopyranosyl)-a-D-galactopyranosyl-1-O-[4-(aminomethyl)benzoyl]-L-serine (2ADOGB) is a side chain of the amino acid L -serine. It has been shown to have antihypertensive, vasodilatory, and diuretic properties in mice. 2ADOGB is converted to an erythroimidazole derivative by aminomethylation and then binds to DNA as a tautomer. This binding inhibits transcription of genes that encode enzymes responsible for synthesizing prostaglandins, thereby reducing inflammation and pain.Fórmula:C17H30N2O13Pureza:Min. 95%Peso molecular:470.43 g/mol(1S) -1- [(2R, 3R,4S) -4-Hydroxymethyl-3- hydroxy- 1- azetidinyl] -1, 2- ethanediol hydrochloride
(1S) -1- [(2R, 3R,4S) -4-Hydroxymethyl-3- hydroxy- 1- azetidinyl] -1, 2- ethanediol hydrochloride is a synthetic sugar that can be used in the synthesis of complex carbohydrates. The sugar is not naturally occurring and must be custom synthesized. It has been modified using fluorination, monosaccharides, and oligosaccharides to produce a glycosylation product. This modification is important for the production of polysaccharides with high purity.Pureza:Min. 95%Chitosan oligomer - Molecular weight 5000 - 15000 Da
CAS:Chitosan is the deacetylated form of chitin. The polysaccharide is deacetylated in order to render it soluble, which is then possible at pH values of less than 7 (normally in dilute acid). This then allows the material to be used in a number of industrial applications as a binder and film former.Cor e Forma:Powder1,2,3,4-Tetra-O-benzoyl-6-O-trityl-a-D-mannopyranose
CAS:1,2,3,4-Tetra-O-benzoyl-6-O-trityl-a-D-mannopyranose is a methylated saccharide. It is a synthetic product that can be used for the modification of oligosaccharides and polysaccharides. This product has been fluorinated and can be used in the synthesis of complex carbohydrates. It can also be used for the synthesis of monosaccharides or sugars.Fórmula:C53H42O10Pureza:Min. 95%Peso molecular:838.89 g/mol(2S,3R,4S)-3-O-Benzoyl-2-(Tert.butyldimethylsilyloxy)methyl-5-methyl-4-O-tert.butyldimethylsilyl-pyrrolidine-3,4-diol
Custom synthesis, Modification, Fluorination, Methylation, Monosaccharide, Synthetic, Click modification, Oligosaccharide, saccharide, CAS No., Polysaccharide. Glycosylation. Sugar. Carbohydrate. Complex carbohydrate.
Pureza:Min. 95%1,5-Diepi-adenophorine
1,5-Diepi-adenophorine is a fluorinated monosaccharide. It is synthesized by an asymmetric glycosylation with 1,5-dideoxyadenosine and α-D-mannose as the donors. The synthesis of this compound requires custom synthesis and high purity. 1,5-Diepi-adenophorine can be modified with methyl groups or click chemistry to make it more suitable for use in biochemistry research.Pureza:Min. 95%1,2,3,4-Tetra-O-benzyl-6-O-tert-butyldimethylsilyl-b-D-glucopyranose
Tetra-O-benzyl-6-O-tert-butyldimethylsilyl-b-D-glucopyranose is an Oligosaccharide. It is a synthetic compound that can be used for glycosylation, methylation, and other chemical modifications. Tetra-O-benzyl-6-O-tert-butyldimethylsilyl-b-D-glucopyranose is a high purity product with CAS No. 92382–10–9. This product can be custom synthesized to meet your specifications.Fórmula:C40H50O6SiPureza:Min. 95%Peso molecular:654.93 g/molMonosialyl, monofucosyl-(1-3)-lacto-N-hexaose
Monosialyl, monofucosyl-(1-3)-lacto-N-hexaose is a high purity oligosaccharide that is custom synthesized for use in glycosylation studies. It can be modified with methylation, fluorination, or Click chemistry to create a variety of sugar derivatives. Monosialyl, monofucosyl-(1-3)-lacto-N-hexaose has been shown to have complex carbohydrate properties and can be used as an α1→6 glycosidic linker in the synthesis of polysaccharides.Pureza:Min. 95%4-Hydroxy-L-isoleucine
CAS:Insulinotropic; anti-diabeticFórmula:C6H13NO3Pureza:Min. 98 Area-%Cor e Forma:White PowderPeso molecular:147.17 g/molL-Iditol
CAS:L-Iditol is a sugar alcohol that is found in small quantities in nature and is used as a food additive and pharmaceutical excipient. L-Iditol has been shown to inhibit the growth of bacteria such as Escherichia coli K-12 at concentrations of 0.1% to 1%. This compound was also shown to have a protective effect on human erythrocytes from oxidative damage. The long-term toxicity of L-Iditol has not been well studied, but it does not seem to be toxic when ingested in doses up to 2000 mg/kg body weight.Fórmula:C6H14O6Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:182.17 g/mol2-C-Azidomethyl-2,3-di-O-benzhydryloxybis(trimethylsilyloxy)silyl-1-O-tert-butyldimethylsilyl-D-erythritol
2-C-Azidomethyl-2,3-di-O-benzhydryloxybis(trimethylsilyloxy)silyl-1-O-tert-butyldimethylsilyl-D-erythritol is a synthetic compound that can be used as a methylating agent and sugar donor in the glycosylation of oligosaccharides. This compound has been shown to methylate saccharides with high purity and can be used for the preparation of complex carbohydrates.Pureza:Min. 95%(2S,3R,4S)-3,4-Dihydroxy-3,4-O-isopropylidene-2,4-di-methyl-pentanal
(2S,3R,4S)-3,4-Dihydroxy-3,4-O-isopropylidene-2,4-di-methyl-pentanal is a custom synthesis of a complex carbohydrate. It has CAS No. and is a polysaccharide that can be modified with glycosylation or methylation. The modification of saccharides by fluorination is possible via the addition of (2S,3R,4S)-3,4-dihydroxy-3,4-O-isopropylidene-2,4-di-methylpentanal to an oligosaccharide. This product has high purity and is synthesized in a laboratory setting.
Pureza:Min. 95%1-Chloro-2-deoxy-3,5-di-O-toluoyl-a-D-ribofuranose
CAS:1-Chloro-2-deoxy-3,5-di-O-toluoyl-a-D-ribofuranose (also known as Hoffer’s chlorosugar) is a synthetic building block used in nucleic acid research to afford an array of both alpha and beta linked 2’-deoxyribose derivatives. Naturally occurring nucleosides are typically beta linked and the efficient synthesis of alpha linked analogues, which are often more stable, offers access to interesting variations in 3D structure and biochemical reactivity.Fórmula:C21H21ClO5Pureza:Min. 90 Area-%Cor e Forma:PowderPeso molecular:388.84 g/molD-Glucosamine-6-phosphate sodium
CAS:D-Glucosamine-6-phosphate sodium salt is a custom synthesis of an oligosaccharide, polysaccharide, and carbohydrate. The chemical modification of this compound includes methylation, glycosylation, and carbamylation. This product has high purity with a fluorination level of 98%.
Fórmula:C6H14NO8P·NaPureza:Min. 95%Cor e Forma:White Yellow PowderPeso molecular:282.14 g/molMethyl 3,5-di-O-(2,4-dichlorobenzyl)-2-C-methyl-α-D-ribofuranoside
CAS:Building block for the synthesis of 2'-âC-âmethyl substituted nucleosidesFórmula:C21H22Cl4O5Pureza:Min. 95%Cor e Forma:Yellow PowderPeso molecular:496.21 g/mol6-Deoxy-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.Fórmula:C42H70O28Pureza:Min. 95%Peso molecular:1,022.99 g/molChenodeoxycholic acid 24-acyl-b-D-glucuronide
CAS:Chenodeoxycholic acid 24-acyl-b-D-glucuronide (CDCA) is a drug that is used to treat gallstones and primary biliary cirrhosis. CDCA has been shown to be effective in treating gallstones by reducing the amount of cholesterol and other bile salts in the bile. It is also prescribed for patients with primary biliary cirrhosis, which is an autoimmune disease that causes inflammation of the small intestine. CDCA has been shown to decrease cholesterol levels and improve liver function in clinical studies. It also has a low toxicity profile, making it safe for long-term treatment. The major side effects are nausea, vomiting, headache, and diarrhea. CDCA binds to fatty acids in the liver cells and prevents their uptake into the cells by blocking fatty acid transporters such as LPL or FATP4 receptors. This increases the amount of free fatty acids available for oxidation by increasing β-oxidation rates within the cellFórmula:C30H48O10Pureza:Min. 95%Cor e Forma:White Off-White PowderPeso molecular:568.7 g/mol3-Galactosyl-N-acetyl-D-lactosamine
3-Galactosyl-N-acetyl-D-lactosamine is a custom synthesis of an oligosaccharide. The complex carbohydrate is composed of a saccharide and its modification. 3-Galactosyl-N-acetyl-D-lactosamine is a polysaccharide that contains saccharides with methylation, glycosylation, and click modification. The carbohydrate has high purity and is fluorinated. It has been synthesized using the Click chemistry method to modify the saccharides in the glycan.Pureza:Min. 95%1,2:3,4-Di-O-isopropylidene-a-L-galactopyranose
CAS:1,2:3,4-Di-O-isopropylidene-a-L-galactopyranose is a synthetic sugar that is used for the saccharide modification of proteins. It has been shown to be an efficient and cost effective way to synthetically modify proteins with oligosaccharides or polysaccharides. 1,2:3,4-Di-O-isopropylidene-a-L-galactopyranose can be modified with fluorine atoms using a click chemistry reaction. This reaction is catalyzed by copper ions and generates a reactive thiol group on the sugar molecule that can then react with amino groups on protein molecules. The resulting product is a glycosylation site on the protein that can be further modified with other sugars or molecules. The fluorination step eliminates any possibility of adverse reactions being caused by the presence of reactive hydroxyl groups.Fórmula:C12H20O6Pureza:Min. 95%Cor e Forma:Colorless Clear LiquidPeso molecular:260.28 g/mol3'-Sialyl Lewis X 4-sp - biotin
3'-Sialyl Lewis X 4-sp - biotin is an oligosaccharide that is synthesized by methylation of the terminal hydroxyl group of 3'-sialyllactose with a bivalent metal ion. This product has been used in the synthesis of glycosylated proteins and as a carrier for small molecules such as drugs.Fórmula:C42H71N7O26SPureza:Min. 95%Peso molecular:1,122.11 g/molMethyl 2-deoxy-2-phthalimido-β-D-glucopyranoside
CAS:Methyl 2-deoxy-2-phthalimido-b-D-glucopyranoside is a synthetic sugar that has been modified with fluorine. It is an important building block for the synthesis of complex carbohydrates. Methyl 2-deoxy-2-phthalimido-b-D-glucopyranoside can be used to modify saccharides and oligosaccharides, as well as to add fluorine atoms to glycosyl units. This modification can be done using a click chemistry reaction with azide functionalized molecules. The chemical structure of Methyl 2-deoxy-2-phthalimido-b-D-glucopyranoside is shown below:Fórmula:C15H17NO7Pureza:Min. 95%Cor e Forma:White to off-white solid.Peso molecular:323.3 g/molNeocarratetraose 4¹, 4³-disulfate disodium salt
CAS:Neocarratetraose 4,4-disulfate disodium salt is a synthetic, fluorinated carbohydrate that is synthesized from neopentyl glycol and 1,2-dichloroethane. It has been used as a substrate for the glycosylation of saccharides. Neocarratetraose 4,4-disulfate disodium salt is a white to off-white powder with a molecular weight of 538.Fórmula:C24H36Na2O25S2Pureza:(%) Min. 95%Cor e Forma:White Off-White PowderPeso molecular:834.64 g/mol2,5-Anhydro-1-O-trityl-D-mannitol
CAS:2,5-Anhydro-1-O-trityl-D-mannitol is a complex carbohydrate with the molecular formula C6H14O6 that has been modified for use in glycosylation reactions. It is a type of sugar that can be modified to create desired properties and can be used as an alternative to other sugars such as glucose. 2,5-Anhydro-1-O-trityl-D-mannitol can be used in the synthesis of oligosaccharides and monosaccharides. This product is available in high purity and has a CAS number of 68774-48-1.
Fórmula:C25H26O5Pureza:Min. 95%Peso molecular:406.48 g/mol3-Deoxy-3-fluoro-1,2:5,6-di-O-isopropylidene-a-D-allofuranose
3-Deoxy-3-fluoro-1,2:5,6-di-O-isopropylidene-a-D-allofuranose is a modification of the naturally occurring 3,6-anhydro form of D allofuranose. It is an oligosaccharide that is the product of a synthetic process and has been shown to be useful in glycosylation reactions. 3DFIODA can be methylated at its hydroxyl groups and glycosylated with saccharides. It is also fluorinated at C3 and C6 positions. This compound has CAS number 141173-26-8 and molecular weight of 228.Fórmula:C12H19FO5Pureza:Min. 95%Peso molecular:262.27 g/mol3,6-Dideoxy-3,6-imino-4,5-O-isopropylidene-D-mannitol
3,6-Dideoxy-3,6-imino-4,5-O-isopropylidene-D-mannitol is a complex carbohydrate that is a sugar. It is an oligosaccharide and has CAS No. 123725-27-8. 3,6-Dideoxy-3,6-imino-4,5-O-isopropylidene D mannitol is a saccharide and it can be modified with methylation or glycosylation. 3,6-Dideoxy D mannitol can be fluorinated in the presence of elemental fluorine to produce 3,6 difluoro 2,5 dihydroxyhexanoic acid. 3,6 Dideoxy D mannitol is synthesized from 2 acetylacetone and tetrachloroethanol as starting materials.Pureza:Min. 95%Trehalose-6-phosphate dipotassium salt
CAS:Trehalose-6-phosphate dipotassium salt is a natural sugar that is found in plants, animals, and fungi. It functions as a carbohydrate reserve and protects cells against osmotic stress. Trehalose-6-phosphate dipotassium salt can be synthesized by the enzyme trehalase from the sugar trehalose and 6-phosphate. It has been shown to protect cells from weevil infestation, which may be due to its ability to produce abiotic or biotic stress. Trehalose-6-phosphate dipotassium salt can be purified using hydrophilic interaction chromatography on an on-line system.Fórmula:C12H21O14PK2Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:498.46 g/molβ,β-Trehalose
CAS:β,β-Trehalose is a carbohydrate that is synthesized by the expression of a trehalose synthase enzyme from the yeast Saccharomyces cerevisiae. β,β-Trehalose is an acidic sugar with two glucose subunits. It has been shown to have an enzymatic mechanism similar to that of glucose. β,β-Trehalose has been found to increase the solubility and stability of proteins in acidic phs (pHs) by binding to hydroxyl groups on protein surfaces. β,β-Trehalose also binds to alcohols such as ethanol and methanol, which may be due to its ability to form hydrogen bonds between oxygen atoms. This sugar also forms hexamers in solution, which may contribute to its effectiveness as a stabilizer for proteins and other molecules. The optimum ph for β,β-trehalose synthesis is around 5.5-6.0 and it can be used at higher phFórmula:C12H22O11Pureza:Min. 99 Area-%Cor e Forma:White Off-White PowderPeso molecular:342.3 g/mol1,3,4,6-Tetra-O-acetyl-2-azido-2-deoxy-L-mannopyranose
1,3,4,6-Tetra-O-acetyl-2-azido-2-deoxy-L-mannopyranose is a carbohydrate that is synthesized by the modification of the glycosylation process. It is a methylated and fluorinated oligosaccharide with a high purity. This product is available for custom synthesis in order to meet specific customer requirements.Fórmula:C14H19N3O9Pureza:Min. 95%Cor e Forma:White To Off-White SolidPeso molecular:373.32 g/mol
