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Glicoscienza

Glicoscienza

La glicosienza è lo studio dei carboidrati e dei loro derivati, nonché delle interazioni e delle funzioni biologiche a cui partecipano. Questo campo di ricerca è cruciale per comprendere una vasta gamma di processi biologici, tra cui il riconoscimento cellulare, la segnalazione, la risposta immunitaria e lo sviluppo delle malattie. La glicosienza ha importanti applicazioni nella biotecnologia, nella medicina e nello sviluppo di nuovi farmaci e terapie. Presso CymitQuimica, offriamo un'ampia selezione di prodotti di alta qualità e purezza per la ricerca in glicosienza. Il nostro catalogo comprende monosaccaridi, oligosaccaridi, polisaccaridi, glicoconiugati e reagenti specifici, progettati per supportare i ricercatori nei loro studi sulla struttura, funzione e applicazioni dei carboidrati nei sistemi biologici. Queste risorse sono destinate a facilitare scoperte scientifiche e applicazioni pratiche in vari ambiti delle bioscienze e della medicina.

Sottocategorie di "Glicoscienza"

Trovati 11011 prodotti di "Glicoscienza"

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  • Methyl 4-azido-4-deoxy-2,3-O-isopropylidene-a-D-mannopyranoside


    Methyl 4-azido-4-deoxy-2,3-O-isopropylidene-a-D-mannopyranoside is a glycosylation reagent that is used to synthesize complex carbohydrates. This product is a monosaccharide with CAS No. 682487-41-6 and has a custom synthesis. It can be fluorinated and saccharified, resulting in an oligosaccharide. The synthesis of this product is based on the Click reaction, which is an efficient way to modify sugar molecules. This product has high purity and can be custom synthesized to meet your needs.

    Purezza:Min. 95%

    Ref: 3D-MM170690

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  • L-Iduronic acid sodium salt

    CAS:

    L-iduronic acid (IdoA) (Collins, 2006) is the major uronic acid component of the glycosaminoglycans dermatan sulfate, chondroitin sulfate and heparin. Iduronic acid is also present in heparan sulfate, although in a minor amount relative to glucuronic acid. Glycosaminoglycans represent a physiologically important group of molecules involved in a variety of biological functions, such as, cell proliferation, cell-to-cell communication, wound healing, coagulation, morphogenesis, and pathogenesis. Glycosaminoglycans present an intriguing target for the design of new approaches for diagnostic and therapeutic agents against various infectious diseases (Kamhi, 2013).

    Formula:C6H9NaO7
    Purezza:Min. 95%
    Colore e forma:Slightly Yellow Powder
    Peso molecolare:216.12 g/mol

    Ref: 3D-MI05148

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  • 1,2,3,4-Tetra-O-pivaloyl-6-O-(tert-butyldiphenylsilyl)-b-D-glucopyranose


    1,2,3,4-Tetra-O-pivaloyl-6-O-(tert-butyldiphenylsilyl)-b-D-glucopyranose is a custom synthesis of an oligosaccharide with a polysaccharide. The carbohydrate is modified with fluorination and methylation. This product has high purity and is synthesized using click chemistry. Monosaccharides are attached to the sugar backbone in order to form complex carbohydrates. This product can be used as a synthetic sugar or in the production of other oligosaccharides.

    Formula:C42H62O10Si
    Purezza:Min. 95%
    Peso molecolare:755.04 g/mol

    Ref: 3D-MT08800

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  • 4-Methoxyphenyl β-D-glucopyranoside

    CAS:

    Bearberry has been used for centuries to treat various disorders of the urinary tract and prostate. The active ingredient in bearberry is a flavonol glycoside called arbutin, which is converted to hydroquinone during metabolism. As an antioxidant, hydroquinone inhibits the oxidation of LDL cholesterol and may reduce the risk of atherosclerosis. Hydroquinone has also been shown to have anti-inflammatory properties in rat liver microsomes and tissue culture, inhibiting prostaglandin synthesis by blocking cyclooxygenase activity. In vitro, bearberry extracts have been shown to inhibit bacterial growth on agar plates with pH levels from 4-7 and at concentrations between 0.1-1%. It was found that bearberry extracts were most effective against Pseudomonas aeruginosa strains, with MIC values ranging from 2-4 mg/mL. Bearberry extract was observed to be more effective than ampicillin against these strains in a chromatographic assay.

    Formula:C13H18O7
    Purezza:Min. 95%
    Colore e forma:Powder
    Peso molecolare:286.28 g/mol

    Ref: 3D-MM07132

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  • O-(2,3,4,6-Tetra-O-acetyl-a-D-mannopyranosyl)-L-serine benzyl ester

    CAS:

    A protected mannose amino acid

    Formula:C24H31NO12
    Purezza:Min. 95 Area-%
    Colore e forma:Powder
    Peso molecolare:525.5 g/mol

    Ref: 3D-FB156010

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  • N-Acetylmuramyl-L-alanyl-D-isoglutamine hydrate

    CAS:
    Muramyl dipeptide is a component of the bacterial cell wall and is found in mycobacteria, mycoplasmas, spirochetes, and gram-positive bacteria. Muramyl dipeptide has been shown to induce the activation of macrophages and other cells by stimulating toll-like receptor 4. It also has significant cytotoxicity against various cancer cells, as well as potent inducers of ubiquitin ligases. The use of muramyl dipeptide in vitro was shown to inhibit replication of HIV-1 virus in human lymphocytes. This agent has also been used for the treatment of bowel disease.
    Formula:C19H32N4O11·xH2O
    Purezza:Min. 96 Area-%
    Colore e forma:Powder
    Peso molecolare:492.48 g/mol

    Ref: 3D-MA58738

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  • Reduced nicotinamide riboside

    CAS:

    The reduced form of nicotinamide riboside or NRH is a potent NAD+ precursor that helps to replenish its levels in the cell. The reduced nicotinamide riboside form has shown high tolerance against degradation in plasma, which is why it is beneficial as a metabolite for the synthesis of NAD/NADH.

    Formula:C11H16N2O5
    Purezza:Min. 95 Area-%
    Colore e forma:Clear Viscous Liquid
    Peso molecolare:256.26 g/mol

    Ref: 3D-MR31174

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  • 6-Bromo-6-deoxy-a-cyclodextrin

    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:C36H54Br6O24
    Purezza:Min. 95%
    Peso molecolare:1,350.22 g/mol

    Ref: 3D-OB44652

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  • Simvastatin acyl-b-D-glucuronide

    CAS:

    Simvastatin acyl-b-D-glucuronide is a modification of simvastatin that has been synthesized and modified to provide high purity. It is a white, crystalline solid with a melting point of about 200°C. This compound can be used as an intermediate in the synthesis of oligosaccharides, polysaccharides, or other carbohydrate derivatives.

    Formula:C31H48O12
    Purezza:Min. 97 Area-%
    Colore e forma:White Off-White Powder
    Peso molecolare:612.71 g/mol

    Ref: 3D-MS10474

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  • Methyl β-D-mannopyranoside isopropylate

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    CAS:

    Methyl b-D-mannopyranoside isopropylate is a high purity synthetic oligosaccharide. It has been custom synthesized and fluorinated with methyl groups on the sugar ring. It can be used for glycosylation, modification, and synthesis of saccharides. This product can also be used as a complex carbohydrate in the food industry.

    Formula:C7H14O6•C3H8O
    Purezza:Min. 95%
    Colore e forma:White Powder
    Peso molecolare:254.28 g/mol

    Ref: 3D-MM04937

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  • Lactose oleate

    CAS:

    Lactose oleate is a fatty acid ester that can be used as an absorption enhancer. It has been shown to increase the absorption of drugs in both inorganic and organic forms. Lactose oleate can be used in assays to determine the profile and nucleophilic attack of fatty acids. Lactose oleate is lipophilic and biodegradable, making it suitable for use as an edible coating or as a membrane for cell culture. Lactose oleate can also be used as a substrate for immobilization studies, where it is immobilized on silica gel particles. This allows for its use in thermodynamic studies. Lastly, lactose oleate has been shown to have potential anti-inflammatory properties in caco-2 cells.

    Formula:C18H34O2•(C12H22O11)x
    Purezza:Min. 95%
    Colore e forma:Powder
    Peso molecolare:624.76 g/mol

    Ref: 3D-DL165220

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  • 3-Acetamido-1-benzylazetidine-2R,4S-diyl bis(methylene) diacetate

    CAS:

    This product is a custom synthesis. The chemical formula for this product is C8H11N2O4. This product has the molecular weight of 272.24 g/mol and the molecular formula is C8H11N2O4. This product is synthesized from 3-acetamido-1-benzylazetidine-2R,4S-diyl bis(methylene) diacetate monohydrate. It can be fluorinated, glycosylated, methylated, modified and oligosaccharide or monosaccharide saccharides. This product can be used in various fields such as pharmaceuticals, agrochemicals, food additives, cosmetics and so on.

    Formula:C18H24N2O5
    Purezza:Min. 95%
    Peso molecolare:348.39 g/mol

    Ref: 3D-MA163437

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  • Gum karaya

    CAS:

    Gum karaya is exuded from Sterculia urens, a bushy tree found in dry regions of North India. Due to its extensive swelling capacity in water it is used as a laxative and as a denture adhesive. The structure consists of D-galactose, D-glucuronic acid and L-rhamnose but the detailed molecular structure is still incompletely known.

    Purezza:Min. 95%
    Colore e forma:Powder

    Ref: 3D-YG58642

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  • Fucoidan, laminaria digitata

    CAS:

    A fucan sulphate found in brown marine algae (Phaeophyta-typically Fucus serratus, Ascophyllum nodosum, Laminaria digitata (illustrated) and Macrocystis pyrifyra) and has been shown to have anticoagulant activity. The main constituents are α-1,4 and α-1,2 linked L-fucose sulphates although galactose also occurs and there are many variations of the basic structure found in different species of Phaeophyta.
    The image was kindly provided by Prof Mike Guiry from Cork who runs ‘The Seaweed Site’.

    Colore e forma:Powder

    Ref: 3D-YF09361

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  • UDP-2-deoxy-2-fluoro-D-mannose

    CAS:

    UDP-2-deoxy-2-fluoro-D-mannose is a modified monosaccharide that is synthesized from D-mannose. It can be used for the synthesis of glycosyls and polysaccharides as well as for the modification of complex carbohydrates. UDP-2-deoxy-2-fluoro-D-mannose has been shown to be an excellent substrate for methylation, glycosylation, and fluorination reactions. This compound can also be used to modify high purity oligosaccharides with a high degree of substitution.

    Formula:C15H23FN2O16P2
    Purezza:Min. 95%
    Peso molecolare:568.29 g/mol

    Ref: 3D-MU158298

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  • D-Mannosaminuronic acid


    D-Mannosaminuronic acid is a monosaccharide that has been isolated from the seed of the African plant, Acacia drepanolobium. It is found to be an antigenic component of shigella and related enterobacteria and plays an important role in the biosynthesis of glycolipids. D-Mannosaminuronic acid can be hydrolyzed by acidic enzymes such as lipases, esterases, phosphatases, or proteases. This process may lead to the liberation of fatty acids and sugars. The purified enzyme preparations have been shown to catalyze the synthesis of D-mannosaminuronic acid from mannose and fructose.

    Purezza:Min. 95%

    Ref: 3D-MM63241

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  • GDP-L-galactose sodium salt

    CAS:

    GDP-L-galactose is a sugar molecule that is an intermediate in the biosynthesis of ascorbate. GDP-L-galactose is synthesized from GDP-D-mannose and GDP-L-glucose by the enzyme GDP-mannose 4,6 dehydratase. The enzyme GDP-L-galactose dehydrogenase then converts GDP-L-galactose to ascorbic acid (vitamin C). Ascorbate is essential for many biological functions such as synthesis of collagen and neurotransmitters, regulation of gene expression, and protection against oxidative stress. The biosynthesis of ascorbate occurs in a light dependent reaction involving L -galactono 1,4 diphosphate synthase and UDP glucose 6 phosphate uridylyl transferase. This process is regulated by transcriptional factors such as MYB and NAC2/NAC4.

    Formula:C16H23N5O16P2Na2
    Purezza:(Hplc-Ms) Min. 95 Area-%
    Colore e forma:White Off-White Powder
    Peso molecolare:649.3 g/mol

    Ref: 3D-MG01735

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  • Allyl a-D-lactose

    CAS:

    A functionalized carbohydrate that serves as a valuable precursor for the synthesis of complex glycoconjugates, oligosaccharides, and glycopolymers through reactions like glycosylation and click chemistry

    Formula:C15H26O11
    Peso molecolare:382.36 g/mol

    Ref: 3D-OA04448

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  • 2-Azido-2-deoxy-3,5-di-O-tert-butyldiphenylsilyl-D-ribono-1,4-lactone


    2-Azido-2-deoxy-3,5-di-O-tert-butyldiphenylsilyl-D-ribono-1,4-lactone is a high purity custom synthesis sugar with a click modification. The chemical formula for this compound is C20H28N4O14 and its molecular weight is 524.329 g/mol. 2A2D3BTSL has been fluorinated, glycosylated, and methylated. It is an oligosaccharide with 6 monosaccharides and a complex carbohydrate that has a saccharide in the center of it.

    Purezza:Min. 95%

    Ref: 3D-MA163276

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  • Octyl 3,4,6-tri-O-benzoyl-a-D-mannopyranoside

    CAS:

    Octyl 3,4,6-tri-O-benzoyl-a-D-mannopyranoside is a carbohydrate that has been custom synthesized. It has a molecular weight of 614.4 g/mol and the chemical formula C30H50O8. This compound is an oligosaccharide with a polysaccharide backbone. Octyl 3,4,6-tri-O-benzoyl-a-D-mannopyranoside is soluble in water and ethanol, but insoluble in hexane or ether. It has CAS No. 19308-45-3 and can be modified by methylation or glycosylation. The molecule contains three sugar residues that have been linked through glycosidic bonds to form a triose sugar (a sugar containing three carbon atoms). The molecule also contains an acetal group at the C1 position of the mannose moiety that can be fluorinated with b

    Formula:C35H40O9
    Purezza:Min. 95%
    Peso molecolare:604.69 g/mol

    Ref: 3D-MO06589

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