- Saccharides
- Glyco Building Blocks
- pNP(para-Nitorophenyl) Glycoseides
pNP(para-Nitorophenyl) Glycoseides
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pNP(para-Nitorophenyl) Glycoseides (21)
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- Formula: C14H18N2O8
- Molecular Weight: 342.30
4-Nitrophenyl-N-acetyl-β-D-glucosaminide, an artificial substrate of N-acetyl-beta-D-hexosaminidase (NAGase), can be used in rapid and accurate rate assay for N-acetyl-beta-D-hexosaminidase. 4-Nitrophenyl-N-acetyl-β-D-glucosaminide is highly soluble and stable. 4-Nitrophenyl-N-acetyl-β-D-glucosaminide can be used for the study of renal tubular injury.
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- Formula: C12H15NO8
- Molecular Weight: 301.25
4-Nitrophenyl β-D-glucopyranoside is a chromogenic substrate for β-glucosidase. 4-Nitrophenyl β-D-glucopyranoside is converted to a colored product, p-nitrophenol that is easily detected spectrophotometrically at 405 nm when used in a β-glycosidase assay. 4-Nitrophenyl β-D-glucopyranoside is hydrolysed through intramolecular nucleophilic catalysis by the phosphate group in the 2-position. 4-Nitrophenyl β-D-glucopyranoside is promising for research of postmenopausal osteoporosis.
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- Formula: C12H15NO8
- Molecular Weight: 301.25
4-Nitrophenyl a-D-glucopyranoside is a chromogenic substrate for α-glucosidase. 4-Nitrophenyl a-D-glucopyranoside can be used to measure of α-glucosidase activity.
August 31
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- Formula: C12H13NO9
- Molecular Weight: 315.23
4-Nitrophenyl β-D-glucuronide (pNPG_1) is aderivative of 4-Nitrophenol. 4-Nitrophenyl β-D-glucuronide is the chromogenic substrate for β-glucuronidase.
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- Formula: C18H25NO13
- Molecular Weight: 463.39
4-Nitrophenyl β-D-Cellobioside (p-Nitrophenyl β-D-cellobioside) is a cellotriose analog. 4-Nitrophenyl β-D-Cellobioside is hydrolyzed by β-glucosidases such as TxGH116 and ThCel7B. 4-Nitrophenyl β-D-Cellobioside can also be hydrolyzed by exoglucanases and endoglucanases to produce p-nitrophenol (PNP). 4-Nitrophenyl β-D-Cellobioside can be used to detect cellulase activity.
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- Formula: C11H13NO7
- Molecular Weight: 271.23
4-Nitrophenyl β-D-xylopyranoside is a chromogenic β-xylosidase substrate. 4-Nitrophenyl β-D-xylopyranoside can be used to test β-xylosidase activity.
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- Formula: C12H15NO7
- Molecular Weight: 285.25
p-Nitrophenyl α-L-fucoside (PNP α-L-Fuc) is a specific substrate of Pecten maximus α-L-fucosidase, with a Km value of 650 µM. p-Nitrophenyl α-L-fucoside serves as a substrate for ClAgl29A and ClAgl29B. Enzymatic hydrolysis of p-Nitrophenyl α-L-fucoside releases p-nitrophenol and α-L-fucose, where the latter undergoes mutarotation over time to form β-L-fucose. p-Nitrophenyl α-L-fucoside is not the preferred substrate for ClAgl29A and ClAgl29B.
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- Formula: C12H15NO8
- Molecular Weight: 301.25
p-Nitrophenyl α-D-mannopyranoside (4-Nitrophenyl α-D-mannopyranoside) is a chromogenic glycosidic ligand. p-Nitrophenyl α-D-mannopyranoside features a sugar moiety (α-D-mannopyranose) with the mannose-characteristic axial hydroxyl group at the C2 position and a ligand portion (p-nitrophenol) that provides ultraviolet-visible light absorption properties. p-Nitrophenyl α-D-mannopyranoside can be used to determine glycosidase activity and characterize the sugar recognition properties of lectins (such as Concanavalin A (HY-P2149)).
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- Formula: C12H15NO8
- Molecular Weight: 301.25
4-Nitrophenyl α-D-galactopyranoside (PNP-alpha-D-Gal) is an artificial substrate of 4-nitrophenyl (pNP) glycopyranoside for detecting α-galactosidase activity. The amount of released pNP is significantly increased when 4-Nitrophenyl α-D-galactopyranoside is used as substrates.
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- Formula: C14H18N2O8
- Molecular Weight: 342.30
4-Nitrophenyl-N-acetyl-β-D-galactosaminide has inhibitory activity against GlcNAc and GalNAc with Kis of 1.15 mM and 0.51 mM, respectively. 4-Nitrophenyl-N-acetyl-β-D-galactosaminide is extracted from Trichomonas foetus (T. foetus)
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- Formula: C20H28N2O13
- Molecular Weight: 504.44
p-Nitrophenyl galacto-N-bioside can be used in glycobiology research.
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- Formula: C26H38N2O17
- Molecular Weight: 650.58
Fuc1-α-2Gal1-β-3GlcNAc-β-PNP is a class of biochemical reagents used in glycobiology research. Glycobiology studies the structure, synthesis, biology, and evolution of sugars. It involves carbohydrate chemistry, enzymology of glycan formation and degradation, protein-glycan recognition, and the role of glycans in biological systems. This field is closely related to basic research, biomedicine, and biotechnology.
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- Formula: C20H28N2O13
- Molecular Weight: 504.44
Gal1-β-3GlcNAc-β-PNP (Galactosyl-N-acetylglucosaminyl-β-p-nitrophenyl) is a class of biochemical reagents used in glycobiology research. Glycobiology studies the structure, synthesis, biology, and evolution of sugars. It involves carbohydrate chemistry, enzymology of glycan formation and degradation, protein-glycan recognition, and the role of glycans in biological systems. This field is closely related to basic research, biomedicine, and biotechnology.
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- Formula: C22H31N3O13
- Molecular Weight: 545.49
GalNAcβ(1-4)GlcNAc-β-pNP is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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- Formula: C22H31N3O13
- Molecular Weight: 545.49
GalNAcβ(1-3)GlcNAc-β-pNP is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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- Formula: C20H28N2O13
- Molecular Weight: 504.44
Galβ(1-3)GalNAc-β-pNP is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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- Formula: C32H48N2O23
- Molecular Weight: 828.72
Galβ(1-3)GlcNAcβ(1-3)Galβ(1-4)Glc-β-pNP is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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- Formula: C31H45N3O21
- Molecular Weight: 795.70
Galβ(1-3)[Neu5Acα(2-6)]GalNAc-α-pNP is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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- Formula: C22H31N3O13
- Molecular Weight: 545.49
GlcNAcβ(1-3)GalNAc-α-pNP is a biochemical reagent that can be used as a biological material or organic compound for life science related research.
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