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alkaline degradation

" in MedChemExpress (MCE) Product Catalog:

5

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Fluorescent Dye

1

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Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-126606

    Antibiotic Infection
    Isochlortetracycline is an inactive alkaline degradation product of the Chlortetracycline (HY-B1327A) (broad-spectrum antibiotic) .
    Isochlortetracycline
  • HY-B2228

    Biochemical Assay Reagents Cancer
    Proteinase, Aspergillus oryzae is a serine protease that hydrolyzes peptide bonds in protein substrates, preferring alkaline conditions (optimal pH 10.5). It efficiently degrades casein, poly-L-glutamic acid, and poly-L-lysine, with activity irreversibly inhibited by diisopropylfluorophosphate (DFP) and potato inhibitor. This enzyme catalyzes proteolysis via serine residues in its active site, finding applications in food processing (e.g., soy sauce fermentation), detergents, and leather industries due to its high yield in solid-state fermentation and cost-effective production.
    Proteinase, Aspergillus oryzae
  • HY-N13110

    Others Others
    23-Aldehyde-16-O-angeloybarringtogenol C (compound 7) is a tea seed saponin, an acid hydrolysis product obtained by oxidative alkaline degradation. Tea seed saponins have potential quinine oxidoreductase inducing activity .
    23-Aldehyde-16-O-angeloybarringtogenol C
  • HY-W717548

    Drug Metabolite Others
    Safinamide acid (Compound Imp-E) is the metabolite of Safinamide (HY-70057). Safinamide acid can be formed by hydrolysis of Safinamide intermediate under alkaline or acidic conditions. Safinamide acid is utilized to monitor process-related impurities and degradation products in safinamide samples .
    Safinamide acid
  • HY-138111

    p-Nitopheyl β-D-cellotetaoside

    Fluorescent Dye Others
    4-Nitrophenyl β-D-cellotetraoside (p-Nitopheyl β-D-cellotetaoside) is a small molecule cellulose mimetic consisting of a tetramer of D-glucose units linked by β-1-4 glycosidic bonds. The fragmentation pattern of 4-Nitrophenyl β-D-cellotetraoside after enzymatic hydrolysis can be analyzed by TLC or by the release of 4-nitrophenol, which has a strong absorbance at 395 nm in alkaline solutions. 4-Nitrophenyl β-D-cellotetraoside can be used in cellulose degradation studies to determine the specificity of cellulases .
    4-Nitrophenyl β-D-cellotetraoside

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