
Monossacáridos
Monossacarídeos são a forma mais simples de carboidratos e servem como building blocks fundamentais para açúcares mais complexos e polissacarídeos. Essas moléculas de açúcar único desempenham papéis críticos no metabolismo energético, na comunicação celular e nos componentes estruturais das células. Nesta seção, você encontrará uma ampla variedade de monossacarídeos essenciais para pesquisas em bioquímica, biologia molecular e glicociência. Esses compostos são cruciais para estudar vias metabólicas, processos de glicosilação e desenvolvimento de agentes terapêuticos. Na CymitQuimica, oferecemos monossacarídeos de alta qualidade para apoiar suas necessidades de pesquisa, garantindo precisão e confiabilidade em suas investigações científicas.
Subcategorias de "Monossacáridos"
- Aloses(11 produtos)
- Arabinoses(21 produtos)
- Eritroses(11 produtos)
- Frutoses(9 produtos)
- Fucoses(36 produtos)
- Galactosamina(41 produtos)
- Galactoses(261 produtos)
- Glucoses(365 produtos)
- Ácidos Glucurónicos(51 produtos)
- Glico-substratos para enzimas(77 produtos)
- Guloses(6 produtos)
- Idoses(4 produtos)
- Inositóis(15 produtos)
- Lixoses(4 produtos)
- Mannoses(65 produtos)
- O-Glicanos(48 produtos)
- Psicoses(3 produtos)
- Ramnoses(10 produtos)
- Riboses(61 produtos)
- Ácidos siálicos(100 produtos)
- Sorboses(4 produtos)
- Açúcares(173 produtos)
- Tagatoses(4 produtos)
- Taloses(8 produtos)
- Xiloses(20 produtos)
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Foram encontrados 6088 produtos de "Monossacáridos"
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1,6-Anhydro-3,4-O-isopropylidene-b-D-galactopyranose
CAS:<p>1,6-Anhydro-3,4-O-isopropylidene-b-D-galactopyranose is a custom synthesis of a complex carbohydrate that has been modified with methylation and glycosylation. It is a saccharide with the CAS number 52579-97-2. This product is highly pure and can be fluorinated for synthesizing other sugars or carbohydrates. The purity of this product is greater than 98%.</p>Fórmula:C9H14O5Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:202.2 g/mol3-Deoxy-D-glycero-D-galacto-2-nonulosonic acid
CAS:<p>3-Deoxy-D-glycero-D-galacto-2-nonulosonic acid (3DG) is a monosaccharide that is present in many biological molecules, such as glycoproteins and glycoconjugates. 3DG is found in the sialic acid residues of glycoproteins and has been shown to have anticancer properties through its ability to inhibit cell growth. This compound also inhibits the synthesis of DNA and RNA by binding to bacterial 16S ribosomal RNA, inhibiting protein synthesis and cell division. 3DG has been used in biocompatible polymers for medical applications, such as drug delivery systems.</p>Fórmula:C9H16O9Pureza:Min. 98 Area-%Cor e Forma:White Yellow PowderPeso molecular:268.22 g/mol1-Deoxygalactonojirimycin hydrochloride salt
CAS:<p>Specific and potent inhibitor of lysosomal α-galactosidase with IC50 in nanomolar range. It acts as pharmacological chaperone and assists folding of the wild type and mutant versions of the enzyme. It places itself in the instable active site and prevents the damage to the enzyme during the passage through Golgi apparatus, endoplasmatic reticulum and lysosome axis. The exposure to this compound leads to increased levels of functional α-galactosidase in models for lysosomal storage disorders and brings therapeutic benefits to patients with Fabry disease.</p>Fórmula:C6H13NO4·HClPureza:Min. 95 Area-%Cor e Forma:White PowderPeso molecular:199.63 g/mol1,2,3,4-Tetra-O-acetyl-L-rhamnopyranose
CAS:<p>1,2,3,4-Tetra-O-acetyl-L-rhamnopyranose is an acetylated disaccharide that is glycosylated with mercuric triflate and glycoalkaloid acceptors. It has been shown to be a glycosylation coupling agent for theophylline in solanum species. 1,2,3,4-Tetra-O-acetyl-L-rhamnopyranose can also act as a steroidal glycoalkaloid acceptor and has been identified in Solanum species.</p>Fórmula:C14H20O9Pureza:Min. 95%Cor e Forma:Colorless PowderPeso molecular:332.3 g/molα-D-Galactopyranosyl phenylisothiocyanate
CAS:<p>a-D-Galactopyranosyl phenylisothiocyanate is a compound that is used in the synthesis of saccharides and oligosaccharides. It reacts with a variety of sugars, including glucose, sucrose, maltose and lactose, to produce methylated derivatives. This reagent is also useful for the synthesis of glycosides. The product can be used in custom synthesis or as a fluorinated carbohydrate.</p>Fórmula:C13H15NO6SPureza:Min. 95%Cor e Forma:Off-White SolidPeso molecular:313.33 g/mol3-O-Benzyl-1,2:5,6-di-O-isopropylidene-α-D-allofuranose
CAS:<p>3-O-Benzyl-1,2:5,6-di-O-isopropylidene-α-D-allofuranose is a carbohydrate that belongs to the group of saccharides. It is an oligosaccharide with a molecular weight of 607.3 g/mol and a CAS number of 22331-21-1. 3OBAF is used in the synthesis of complex carbohydrates or as a sugar substitute and can be custom synthesized to meet your specifications. This product is available for sale and can be shipped internationally.</p>Fórmula:C19H26O6Pureza:Min. 95%Cor e Forma:White Off-White PowderPeso molecular:350.41 g/mol2-Acetamido-3,4,6-tri-O-acetyl-2-deoxy-β-D-glucopyranosyl-Fmoc serine
CAS:<p>2-Acetamido-3,4,6-tri-O-acetyl-2-deoxy-β-D-glucopyranosyl Fmoc serine is a modified sugar that is synthesized by the glycosylation of 2,3,4,6-tetra‑O‑acetyl‑2‑deoxy‑α‑D‑glucopyranose with an amino acid. It is used in peptide synthesis and as a building block for other oligosaccharides and saccharides. This compound has been shown to be useful in the production of complex carbohydrates.</p>Fórmula:C32H36N2O13Pureza:Min. 95 Area-%Cor e Forma:White To Off-White SolidPeso molecular:656.63 g/mol1,2,3,4,6-Penta-O-(3,4,5-tri-O-benzylgalloyl)-b-D-glucopyranose
CAS:<p>1,2,3,4,6-Penta-O-(3,4,5-tri-O-benzylgalloyl)-b-D-glucopyranose is a custom synthesis, complex carbohydrate that has been modified with methylation and glycosylation. It is also a saccharide that can be found in the form of an Oligosaccharide or Polysaccharide. The CAS No. for this compound is 122625-60-9. This compound has a purity level of 99% and is 100% synthetic. It has been fluorinated to make it more stable.<br>1,2,3,4,6-Penta-O-(3,4,5-tri-O-benzylgalloyl)-b-D-glucopyranose can be used in pharmaceuticals as a sugar or carbohydrate. It can also be used as a food additive for flavoring purposes</p>Fórmula:C146H122O26Pureza:Min. 95%Peso molecular:2,292.52 g/molL-Threose - aqueous solution
CAS:<p>L-Threose is a sugar molecule that is used as a structural component of DNA and RNA. It is also an important part of the energy metabolism in cells. L-Threose can be enzymatically inactivated by glycosidases, which are enzymes that hydrolyze glycosidic bonds. The inhibition of glycosidases by L-threose may be useful for the prevention or treatment of diseases associated with enzyme activity, such as diabetes mellitus type II. L-Threose has been shown to have inhibitory properties against sephadex G-100, a membrane protein found in bacteria. L-Threose may be useful as a control agent for research into the response element of polymerase chain reaction (PCR).</p>Fórmula:C4H8O4Pureza:Min. 60 Area-%Cor e Forma:Clear LiquidPeso molecular:120.1 g/mol2,3,4,6-Tetra-O-benzyl-D-mannopyranosyl fluoride
CAS:<p>2,3,4,6-Tetra-O-benzyl-D-mannopyranosyl fluoride is a glycosylamine that has been synthesized from l-threonine. The chemical structure of this compound can be classified as a pyranose sugar with an O-methylated benzyl group at the C2 position. This sugar is synthesized by reductive cleavage of the methyl ether and subsequent reaction with sodium borohydride. The conformational analysis of the molecule was performed using molecular mechanics calculations and quantum mechanical simulations. In addition, electron paramagnetic resonance (EPR) experiments were conducted to determine the chemical shift in the 1H NMR spectrum and to identify the acceptor or donor in the molecule. Trichloroacetimidates are used as monomers for this type of synthesis because they provide good yields and can be easily prepared by reacting chloroacetic acid with chloral hydrate.</p>Fórmula:C34H35FO5Pureza:Min. 95%Cor e Forma:Yellow PowderPeso molecular:542.64 g/molMethyl 2,3-O-isopropylidene-α-L-rhamnopyranoside
CAS:<p>Methyl 2,3-O-isopropylidene-a-L-rhamnopyranoside is a custom synthesis that was developed to meet the specifications of our customer. It is a high purity, custom synthesis that has undergone click modification and glycosylation. This product is a monosaccharide with an Oligosaccharide modification.</p>Fórmula:C10H18O5Pureza:Min. 95%Cor e Forma:Clear LiquidPeso molecular:218.25 g/molMethyl 2-acetamido-3,4,6-tri-O-acetyl-2-deoxy-β-D-glucopyranoside
CAS:<p>Methyl 2-acetamido-3,4,6-tri-O-acetyl-2-deoxy-β-D-glucopyranoside is an Oligosaccharide that is used in the preparation of complex carbohydrates. It has a CAS number of 2771-48-4 and can be synthesized using a custom synthesis. This product is available in high purity and monosaccharide form. It has been glycosylated and methylated as well as fluorinated and saccharified.</p>Fórmula:C15H23NO9Pureza:Min. 95%Cor e Forma:White Off-White PowderPeso molecular:361.34 g/molD-Galactosamine hydrochloride - Synthetic origin
CAS:<p>D-Galactosamine (GalN) is an aldohexose (2-Amino-2-deoxygalactose) in which the hydroxyl group at position 2 is replaced by an amino group (Collins, 2006). Galactosamine (as the N-Acetyl derivative) forms a key part of both N- and O-linked glycoproteins, glycolipids and glycosaminoglycans. Treatment of experimental animals with D-galactosamine / lipopolysaccharide causes lethal liver injury characterized by apoptosis of the hepatocyte and it is used as a laboratory model to study the effect of therapeutic agents (Hirono, 2001).</p>Fórmula:C6H13NO5·HClPureza:Min. 98 Area-%Cor e Forma:White PowderPeso molecular:215.63 g/mol1,3,4,6-Tetra-O-acetyl-a-D-galactopyranose
CAS:<p>1,3,4,6-Tetra-O-acetyl-a-D-galactopyranose is a custom synthesis of 1,3,4,6-tetra-O-acetyl-a-D-galactopyranose. It is used in the modification of saccharides and polysaccharides. The modification is done by Click chemistry with the incorporation of fluorine in the sugar ring. This product is available as a white powder and has a CAS number of 19186-40-4.</p>Fórmula:C14H20O10Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:348.3 g/molEthyl 4,6-O-benzylidene-b-D-galactopyranoside
CAS:<p>Ethyl 4,6-O-benzylidene-β-D-galactopyranoside is a carbohydrate that belongs to the monosaccharide class. It is glycosylated with an ethyl group at the hydroxyl group at the 6th position and methylated on the benzene ring at the 4th position. This modification has been shown to increase its solubility in water and its stability in basic solutions. The synthesis of this compound is performed through a click reaction, which allows for high purity and custom synthesis. Ethyl 4,6-O-benzylidene-β-D-galactopyranoside can be used as a sugar substitute or in pharmaceuticals for treatment of diabetes mellitus type 2.</p>Fórmula:C15H20O6Pureza:Min. 95%Cor e Forma:PowderPeso molecular:296.32 g/molMethyl 4,6-O-benzylidene-2,3-di-O-(p-toluenesulfonyl)-α-D-glucopyranoside
CAS:<p>Methyl 4,6-O-benzylidene-2,3-di-O-(p-toluenesulfonyl)-a-D-glucopyranoside is a custom synthesis that has been modified with fluorination, methylation, and click modification. It is a monosaccharide that can be found in saccharides and polysaccharides. This product is also a synthetic carbohydrate with the CAS number of 6884-01-1.<br>Methyl 4,6-O-benzylidene-2,3-di-O-(p-toluenesulfonyl)-a -D -glucopyranoside has been shown to have antihyperglycemic properties by inhibiting the action of alpha amylase on starch. This product also inhibits the activity of alpha amylase on glycogen and lactose.</p>Fórmula:C28H30O10S2Pureza:Min. 95%Peso molecular:590.66 g/molN-Acetyl-3-fluoro-neuraminic acid sodium
CAS:<p>N-Acetyl-3-fluoro-neuraminic acid sodium (AFNA) is an inhibitor that binds to the terminal sialic acid residue of the glycoprotein neuraminidase in influenza viruses, preventing the virus from attaching to cells. AFNA is a fluorinated derivative of mannosamine and is synthesized by reacting an aldolase with sulfur trifluoride. AFNA has been shown to inhibit sialidases and utilising enzymes, which are necessary for viral replication. AFNA also inhibits bacterial sialidases, which are required for the synthesis of cell wall components.</p>Fórmula:C11H18FNO9•Nax327Pureza:Min. 95%Cor e Forma:PowderPeso molecular:326.25 g/molBenzyl 2-deoxy-2-phthalimido-β-D-glucopyranoside
CAS:<p>Benzyl 2-deoxy-2-phthalimido-b-D-glucopyranoside is a custom synthesis that belongs to the group of complex carbohydrates. It is an oligosaccharide or polysaccharide that is modified with methylation, glycosylation, and carbamylation, and has a CAS number of 80035-32-1. This compound has been used in the synthesis of saccharides for the preparation of an antibody drug conjugate. Benzyl 2-deoxy-2-phthalimido-b-D-glucopyranoside is also known as 6Fluoro 3 indoxyl beta D galactopyranoside.</p>Fórmula:C21H21NO7Pureza:Min. 95%Peso molecular:399.39 g/mol1,3,4,6-Tetra-O-acetyl-2-deoxy-2-phthalimido-b-D-glucopyranoside
CAS:<p>The interaction of 1,3,4,6-tetra-O-acetyl-2-deoxy-2-phthalimido-b-D-glucopyranoside with DNA is selective for the hydroxyl group and for the stacking of its glycosidic bonds. The data obtained from the spectra show that this compound interacts with the sugar moiety of nucleosides to yield a product with a lower melting point. The binding constants are high and the yields are low.</p>Fórmula:C22H23NO11Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:477.42 g/mol2,3-O-Isopropylidene-D-erythronolactone
CAS:<p>2,3-O-Isopropylidene-D-erythronolactone is a chromophore that has been synthesised. It is a chiral heterocycle with an anion linker and a boron trifluoride etherate group. The carbon chain of 2,3-O-isopropylidene-D-erythronolactone has been found to be essential for its antibacterial activity against tuberculosis. This compound binds to the adenosine receptor in the bacterial cell membrane and inhibits bacterial growth.</p>Fórmula:C7H10O4Pureza:Area-% Min. 95 Area-%Cor e Forma:PowderPeso molecular:158.15 g/mol3,4-Dihydro-5-hydroxy-2-(3-hydroxy-4-methoxyphenyl)-4-oxo-2H-1-benzopyran-7-yl β-D-glucopyranosiduronic acid
CAS:<p>Hesperetin 7-O-b-D-glucuronide is a metabolite of hesperetin, a flavonoid primarily sourced from citrus fruits. This compound is formed through the glucuronidation process, a metabolic pathway that modifies hesperetin to enhance its solubility and facilitate its excretion from the human body. Hesperetin 7-O-b-D-glucuronide exerts biological effects through various modes of action, including antioxidant and anti-inflammatory mechanisms. It is thought to scavenge free radicals and modulate inflammatory pathways by inhibiting specific enzymes and cytokines.In scientific research, Hesperetin 7-O-b-D-glucuronide is studied for its potential therapeutic applications, particularly its role in reducing oxidative stress and inflammation-related diseases. It has garnered attention in the context of cardiovascular health, neuroprotection, and metabolic disorders. The exploration of its bioavailability and specific interactions at the molecular level continues to provide insights into its promising applications in nutraceuticals and pharmaceuticals. Researchers investigate its efficacy and safety to better understand its potential role in disease prevention and therapy.</p>Fórmula:C22H22O12Pureza:Min. 95%Cor e Forma:PowderPeso molecular:478.4 g/molPhenyl 2,3,6-tri-O-acetyl-2-deoxy-2-trichloroacetamido-b-D-thioglucopyranoside
<p>Phenyl 2,3,6-tri-O-acetyl-2-deoxy-2-trichloroacetamido-b-D-thioglucopyranoside is a monosaccharide with a molecular weight of 594.5. It is derived from the reaction of methyl acetate and benzene in the presence of sulfuric acid. Phenyl 2,3,6-tri-O-acetyl-2-deoxy-2-trichloroacetamido b D thioglucopyranoside is an intermediate in the synthesis of saccharides that are modified by click chemistry or modification. <br>This product has been shown to be synthesized with high purity and good yield. The product can be used for custom synthesis as well as glycosylation reactions. This product also has a CAS number and can be used for Click chemistry or modification reactions.</p>Fórmula:C20H22Cl3NO8SPureza:Min. 95%Cor e Forma:White to off-white solid.Peso molecular:542.81 g/molPhenyl 4,6-O-benzylidene-2-deoxy-2-phthalimido-b-D-thioglucopyranoside
CAS:<p>Phenyl 4,6-O-benzylidene-2-deoxy-2-phthalimido-b-D-thioglucopyranoside is a custom synthesis sugar that has been modified with fluorination, glycosylation, and carbamoylation. It is an oligosaccharide that contains a saccharide at the reducing end of the molecule. The CAS number for this compound is 79528-51-1.</p>Fórmula:C27H23NO6SPureza:Min. 95%Cor e Forma:White PowderPeso molecular:489.54 g/mol2-Acetamido-3,4,6-tri-O-benzyl-2-deoxy-D-glucono-1,5-lactone
CAS:<p>2-Acetamido-3,4,6-tri-O-benzyl-2-deoxy-D-glucono-1,5-lactone is a methylated saccharide with a modified sugar. This compound can be used as a building block for the synthesis of glycosides and oligosaccharides. 2AATGL has been shown to be compatible with click chemistry and is available in high purity. It can also be custom synthesized to meet your needs.</p>Fórmula:C29H31NO6Pureza:Min. 90%Cor e Forma:PowderPeso molecular:489.56 g/molD-Galactosamine-1-phosphate
CAS:<p>D-Galactosamine-1-phosphate is a precursor of UDP-glucose and is used in the synthesis of fatty acids. D-Galactosamine-1-phosphate is synthesized by the enzyme UDP-glucose pyrophosphorylase, which catalyzes the reaction between UDP and D-galactose. It is expressed in strains that have been engineered to produce recombinant proteins. This product can be produced in vitro by a number of methods, including enzymatic or chemical synthesis. The enzyme activity of D-galactosamine 1 phosphate synthase is temperature dependent, with optimal activity at 40°C. This product has been shown to inhibit hepatitis virus production and lipid formation in vitro.</p>Fórmula:C6H14NO8PPureza:Min. 95%Cor e Forma:PowderPeso molecular:259.15 g/molMethyl 2,3,6-tri-O-benzoyl-α-D-galactopyranoside
CAS:<p>Methyl 2,3,6-tri-O-benzoyl-α-D-galactopyranoside is a water soluble white powder. It has a molecular weight of 370.62 and a melting point of 199°C. This product is used as an intermediate in the synthesis of complex carbohydrates and is also used in the production of glycosylations and polysaccharides. The purity of this product is >98%.</p>Fórmula:C28H26O9Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:506.5 g/mol2,3,4,6-Tetra-O-acetyl-1-S-acetyl-b-D-thiogalactopyranose
<p>2,3,4,6-Tetra-O-acetyl-1-S-acetyl-b-D-thiogalactopyranose is a synthetic sugar that is used in the synthesis of complex carbohydrates. It has been modified with methylation and acetylation reactions. The CAS number for this compound is 112724-71-8.</p>Fórmula:C15H20O11SPureza:Min. 95%Peso molecular:408.38 g/mol5-Aldo-1,2-O-isopropylidene-b-D-arabinofuranose
CAS:<p>5-Aldo-1,2-O-isopropylidene-b-D-arabinofuranose is a sugar that is synthesized from D-glucose. It has been modified with fluorine to produce an analogue of 5-fluoroarabinofuranose. The methylation and glycosylation of this compound have also been investigated. This chemical can be used for the synthesis of complex carbohydrates.</p>Fórmula:C8H12O5Pureza:Min. 95%Cor e Forma:PowderPeso molecular:188.18 g/mol1,2-O-Isopropylidene-α-D-glucofuranurono-6,3-lactone
CAS:<p>1,2-O-Isopropylidene-a-D-glucofuranurono-6,3-lactone is a compound with hepatocyte growth factor activity that is used in the diagnosis of liver diseases. It can also be used as a reagent for the detection of lactones and as an industrial chemical. 1,2-O-Isopropylidene-a-D-glucofuranurono-6,3-lactone has been shown to activate the hepatocyte growth factor receptor (HGFR) and induce cell proliferation in human hepatocytes. This compound is not toxic to cells at concentrations up to 100 mM.</p>Fórmula:C9H12O6Pureza:Min. 98%Cor e Forma:PowderPeso molecular:216.19 g/molMethyl 2,3,5-tri-O-(p-chlorobenzoyl)-β-D-ribofuranoside
CAS:<p>Methyl 2,3,5-tri-O-(p-chlorobenzoyl)-b-D-ribofuranoside is a custom synthesis that has been modified with fluorination and methylation. It is a monosaccharide that can be synthesized by the reaction of 3,5-di-O-(p-chlorobenzoyl)ribose with formaldehyde. Methyl 2,3,5-tri-O-(p-chlorobenzoyl)-b-D-ribofuranoside can be used in saccharide or glycosylation reactions to produce oligosaccharides or polysaccharides. This chemical is also useful for click chemistry modifications.</p>Fórmula:C27H21Cl3O8Pureza:Min. 95%Cor e Forma:White to off-white solid.Peso molecular:579.81 g/molD-Ribose-5-phosphate barium salt hexahydrate
CAS:<p>D-Ribose-5-phosphate barium salt hexahydrate is a Modification, Oligosaccharide, Carbohydrate, complex carbohydrate. It is a Custom synthesis, Synthetic, High purity, Monosaccharide, Methylation, Glycosylation and Polysaccharide. D-Ribose-5-phosphate barium salt hexahydrate has CAS No. 15673-79-7 and Fluorination. It is an saccharide sugar.</p>Fórmula:C5H9BaO8P·6H2OPureza:Min. 95%Cor e Forma:White PowderPeso molecular:473.51 g/molBenzyl 2-acetamido-2-deoxy-4,6-O-isopropylidene-b-D-glucopyranoside
CAS:<p>Benzyl 2-acetamido-2-deoxy-4,6-O-isopropylidene-b-D-glucopyranoside is a surfactant that is used in the measurement of polymers. It is soluble in water and has a low concentration. This surfactant can be used as a copolymer with terephthalate to form polyurethane foam. Benzyl 2-acetamido-2-deoxy-4,6-O-isopropylidene b -D -glucopyranoside also has high concentrations for sedimentation and sulfonate properties.</p>Fórmula:C18H25NO6Pureza:Min. 95%Cor e Forma:PowderPeso molecular:351.39 g/mol4-Methoxyphenyl 3-O-benzyl-6-O-tert-butyldimethylsilyl-2-deoxy-2-phthalimido-b-D-glucopyranoside
CAS:<p>C3-Benzyl-6-O-tert-butyldimethylsilyl-2-deoxy-2-phthalimido-b-D-glucopyranoside is a synthetic glycosylation agent that converts carbohydrates to sugar derivatives. It is a fluorinated sugar with a benzyl group and can be used in the synthesis of complex polysaccharides and saccharides. C3BzTBDMSG has been shown to have high purity, which makes it an ideal choice for Click chemistry and modification.</p>Fórmula:C34H41NO8SiPureza:Min. 95%Peso molecular:619.78 g/mol6-Azido-6-deoxy-1,2:3,4-di-O-isopropylidene-a-D-galactopyranose
CAS:<p>6-Azido-6-deoxy-1,2:3,4-di-O-isopropylidene-a-D-galactopyranose is a copper complex that is soluble in water. It is used as an initiator for the polymerization of galactose monomers. 6AIDOGAL reacts with azide or diazo compounds to form a cycloaddition reaction and can be used to prepare copolymers by reacting with other monomers such as D-glucose. The temperature range for this reaction is between 20°C and 100°C. This compound has been shown to form stable complexes with Cu(II) ions at temperatures below 0°C.</p>Fórmula:C12H19N3O5Pureza:Min. 98 Area-%Cor e Forma:Colorless Clear LiquidPeso molecular:285.3 g/molPhenolphthalein b-D-glucuronic acid sodium salt
CAS:<p>beta-glucuronidase substrate</p>Fórmula:C26H22O10NaPureza:Min. 95 Area-%Cor e Forma:Yellow PowderPeso molecular:517.44 g/mol4-Methoxyphenyl 2,3:4,6-di-O-benzylidene-α-D-mannopyranoside
CAS:<p>4-Methoxyphenyl 2,3:4,6-di-O-benzylidene-a-D-mannopyranoside is a water soluble polysaccharide that is a methylated derivative of mannose. It has been fluorinated at the 4 position and modified with benzyl groups at the 2, 3, and 6 positions. This compound is used in custom synthesis to synthesize oligosaccharides or polysaccharides.</p>Fórmula:C27H26O7Pureza:Min. 95%Peso molecular:462.49 g/molGlucosyl-C18-sphingosine
CAS:<p>Glucosyl-C18-sphingosine is a sphingolipid that has been shown to inhibit the activity of Gaucher's enzyme, which is responsible for the synthesis of glucosylceramide. It has been demonstrated in a model system that glucosyl-C18-sphingosine inhibits mitochondrial membrane potential and decreases ATP levels, leading to cell death. The molecular pathogenesis of Gaucher disease is not well understood but it is believed to be related to defective lysosomal function. Glucosyl-C18-sphingosine may be used as a diagnostic agent for Gaucher disease and other metabolic disorders involving glucosylceramide accumulation.</p>Fórmula:C24H47NO7Pureza:Min. 95%Cor e Forma:PowderPeso molecular:461.63 g/molAllyl 3-O-benzyl-a-D-glucopyranoside
CAS:<p>Allyl 3-O-benzyl-a-D-glucopyranoside is a synthetic, monosaccharide carbohydrate. The product is a modification of the natural polysaccharide allyl 3-O-benzyl-a-D-glucopyranoside. Allyl 3-O-benzyl-a -D glucopyranoside is an Oligosaccharide with CAS No. 145454-72 -4 and has the molecular formula C14H20O6 and molecular weight of 312.32 g/mol. The product is available in high purity and can be synthesized to order. Allyl 3-O -benzyl -a D glucopyranosides are useful as a Fluorination, saccharide for use in glycosylation or methylation reactions or as a complex carbohydrate in the synthesis of oligosaccharides, polysaccharides, or sugar chains.</p>Fórmula:C16H22O6Pureza:Min. 95%Peso molecular:310.34 g/molD-Glucurono-3,6-lactone
CAS:<p>Glucose metabolite</p>Fórmula:C6H8O6Pureza:Min 98%Cor e Forma:White PowderPeso molecular:176.12 g/mol1,2-Isopropylidene-D,L-myo-inositol
CAS:<p>1,2-Isopropylidene-D,L-myo-inositol is a modification of the natural product myo-inositol. It is synthesized by methylation and glycosylation of inositol with methanol. This chemical compound has been modified to include fluorination and saccharide.</p>Fórmula:C9H16O6Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:220.22 g/molMethyl 4,6-O-benzylidene-a-D-mannopyranoside
CAS:<p>Methyl 4,6-O-benzylidene-a-D-mannopyranoside is a hexadecanoic acid that is mediated by the target cell. It has been shown to inhibit the growth of bacteria and cancer cells in vitro. Methyl 4,6-O-benzylidene-a-D-mannopyranoside also possesses an antibacterial activity with a low mammalian toxicity. This compound is hydrolyzed by esterases or glucuronidases, oxidized by cytochrome P450 enzymes, reduced by glutathione reductase, or conjugated with glucuronic acid. The residue of this compound has been shown to be carcinogenic in vivo and in vitro. Anticancer activity of this compound may be due to its ability to disrupt DNA synthesis and induce apoptosis of cancer cells.</p>Fórmula:C14H18O6Pureza:Min. 95%Cor e Forma:PowderPeso molecular:282.29 g/molPropyl b-D-glucuronide
CAS:<p>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.</p>Fórmula:C9H16O7Pureza:Min. 95%Cor e Forma:Tan To Brown SolidPeso molecular:236.22 g/mol1,3,4,6-Tetra-O-acetyl-a-D-glucopyranose
CAS:<p>1,3,4,6-Tetra-O-acetyl-a-D-glucopyranose is a synthon that is used as a synthetic intermediate for the synthesis of other compounds. It is also a reactive compound that can be used to synthesize carboxylic acids and hydroxy ketones by reaction with water or alcohols. 1,3,4,6-Tetra-O-acetyl-a-D-glucopyranose can also be converted into esters by reaction with alcohols.</p>Fórmula:C14H20O10Pureza:Min. 93 Area-%Cor e Forma:White Off-White PowderPeso molecular:348.3 g/mol1,2,3,4-Tetra-O-acetyl-L-fucopyranose
CAS:<p>Intermediate for the anomeric modification of Fuc, including fucosylation</p>Fórmula:C14H20O9Pureza:Min. 97 Area-%Cor e Forma:White PowderPeso molecular:332.3 g/mol1-Octylamino-1-deoxy-D-glucitol
CAS:<p>1-Octylamino-1-deoxy-D-glucitol is a natural product that is extracted from the bark of the tree Streptomyces griseorubens. It has been shown to have a diastereomeric ratio of 97:3 and an optical purity of 98%. The thermodynamic properties of this compound are determined by the reaction time, which can vary from 1 to 24 hours. The enantiomers are separated by chromatography or crystallization, and the solubility data is determined at 25°C.</p>Fórmula:C14H31NO5Pureza:Min. 95%Cor e Forma:PowderPeso molecular:293.4 g/molBenzyl D-glucuronate
CAS:<p>Used for the synthesis of 1β-O-acyl glucuronides</p>Fórmula:C13H16O7Pureza:Min. 95%Cor e Forma:White PowderPeso molecular:284.26 g/molThymol-β-D-glucopyranoside
CAS:<p>Thymol-b-D-glucopyranoside is a bactericidal agent that is resistant to encapsulation. It has been shown to be effective against animals and typhimurium in an incubated population and endogenous deaminase inhibitor strategy. The porcine activated food chemistry and abattoir experiments show that thymol-b-D-glucopyranoside has the potential to reduce populations of bacteria in the gastrointestinal tract by inhibiting protein synthesis.</p>Fórmula:C16H24O6Pureza:Min. 95%Cor e Forma:PowderPeso molecular:312.36 g/mol3,4,6-Tri-O-acetyl-D-galactal
CAS:<p>3,4,6-Tri-O-acetyl-D-galactal is a versatile building block used for the synthesis of mono- and oligosaccharides. The galactal double bond affords a ready means through which to introduce new functionality or introduce deoxy positions at the C1 and C2 positions to afford functionalised monosaccharides and also allows galactals to be used as glycosylation donors.</p>Fórmula:C12H16O7Pureza:Min. 98 Area-%Cor e Forma:Slightly Yellow Clear LiquidPeso molecular:272.25 g/molUDP-6-azido-6-deoxy-D-glucose x·triethylammonium salt
CAS:<p>UDP-6-azido-6-deoxy-D-glucose is a chemical building block that is used for saccharide synthesis. The azide group can be reduced to give the amine which has been used to make a fluorescent tag for 5-(hydroxymethyl)cytosine in DNA. UDP-6-azido-6-deoxy-D-glucose has also been used to synthesise siderophore conjugates which can be used to deliver functional reagents across bacterial cell membranes.</p>Fórmula:C15H23N5O16P2·x(C6H15N)Pureza:Min. 90 Area-%Cor e Forma:Off-White PowderPeso molecular:591.31 g/molD-Glucono-1,5-lactone
CAS:<p>D-Glucono-1,5-lactone is a chemical compound that is a member of the class of compounds known as diketones. It can be used in chemical biology and polymer chemistry to probe hydrogen bonding interactions, polymer compositions, and redox potentials. D-Glucono-1,5-lactone has been shown to inhibit the growth of cells in culture by inhibiting DNA synthesis. This inhibition is due to its ability to bind with high affinity to nucleic acids and prevent the formation of the enzyme complexes required for transcription and replication. The effects are reversible.</p>Fórmula:C6H10O6Pureza:Min. 95%Cor e Forma:PowderPeso molecular:178.14 g/mol
