1. Others

Others

There are a number of inhibitors, agonists, and antagonists which we cannot make precise classification because the research area is still unknown.

Others Related Products (73764):

Cat. No. Product Name CAS No. Purity Chemical Structure
  • HY-W398341
    Methyl 1,2,3,4-Tetra-O-acetyl-α-L-idopyranuronate 108032-41-3 98%
    Methyl 1,2,3,4-Tetra-O-acetyl-α-L-idopyranuronate 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.
    Methyl 1,2,3,4-Tetra-O-acetyl-α-L-idopyranuronate
  • HY-W402148
    10-Methyl-9-(phenoxycarbonyl)acridinium fluorosulfonate 149300-54-9 99.79%
    10-Methyl-9-(phenoxycarbonyl)acridinium fluorosulfonate, a phenyl ester of acridinium esters, is a fluorescent dye that produces chemiluminescent under neutral conditions. 10-Methyl-9-(phenoxycarbonyl)acridinium fluorosulfonate can be used for the measurement of hydrogen peroxide.
    10-Methyl-9-(phenoxycarbonyl)acridinium fluorosulfonate
  • HY-W402286
    β-D-Glucopyranuronic acid,methyl ester,1,2,3,4-tetrakis(2-methylpropanoate) 150607-94-6 98.10%
    β-D-Glucopyranuronic acid,methyl ester,1,2,3,4-tetrakis(2-methylpropanoate) 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.
    β-D-Glucopyranuronic acid,methyl ester,1,2,3,4-tetrakis(2-methylpropanoate)
  • HY-W414321
    Fructosamine hydrochloride 39002-30-7
    Fructosamine (D-Isoglucosamine) hydrochloride is a metabolic intermediate and component of cell membranes and cartilage. Fructosamine hydrochloride induces site-specific breaks in DNA chains, especially in the presence of Cu2+.
    Fructosamine hydrochloride
  • HY-W415798
    Ac4GalNAlk 1810852-60-8 98.9%
    Ac4GalNAlk is a weakly alkyne-labeled reagent for metabolic oligosaccharide engineering (MOE) that can be used to detect protein glycosylation. MOE reagents can be activated by cellular biosynthetic machinery into nucleotide sugars, which can be further traced through the introduction of glycoproteins in bioorthogonal chemistry. Ac4GalNAlk promotes nucleotide-sugar biosynthesis and increases bioorthogonal cell surface markers.
    Ac4GalNAlk
  • HY-W416240
    4-Methylumbelliferyl 2-Amino-2-deoxy-α-D-glucopyranoside 137687-00-4 99.87%
    4-Methylumbelliferyl 2-Amino-2-deoxy-α-D-glucopyranoside is a biochemical assay reagent.
    4-Methylumbelliferyl 2-Amino-2-deoxy-α-D-glucopyranoside
  • HY-W420462
    Naphthol AS-BI phosphate sodium 530-79-0 98.58%
    Naphthol AS-BI phosphate (sodium) is a biochemical assay reagent.
    Naphthol AS-BI phosphate sodium
  • HY-W440177
    2,3,5,6-Tetrabromoterephthalic acid 5411-70-1 98.53%
    2,3,5,6-Tetrabromoterephthalic acid (Tetrabromoterephthalicacid) is a metal-organic framework (MOF).
    2,3,5,6-Tetrabromoterephthalic acid
  • HY-W440409
    2,2′-Bipyridine-d8 32190-42-4 99.33%
    2,2′-Bipyridine-d8 is the deuterium labeled 2,2′-Bipyridine-d8.
    2,2′-Bipyridine-d8
  • HY-W440548
    Ethylene glycol diacrylate 2274-11-5 99.43%
    Ethylene glycol diacrylate (Ethylene diacrylate) is a polymer precursor used to form covalently crosslinked hydrogels with a degree of polymerization of 13.
    Ethylene glycol diacrylate
  • HY-W440813
    Heptadecan-9-yl 8-bromooctanoate 2089253-22-3
    Heptadecan-9-yl 8-bromooctanoate can be useful for the building or modification of lipid nanoparticles.
    Heptadecan-9-yl 8-bromooctanoate
  • HY-W440922
    m-PEG1000-DSPE sodium 98%
    m-PEG1000-DSPE sodium is a PEG lipid that can improve the delivery efficiency and tissue specificity of poorly soluble drugs. m-PEG1000-DSPE sodium can be used in drug delivery research.
    m-PEG1000-DSPE sodium
  • HY-W440924
    m-PEG3000-DSPE sodium
    m-PEG3000-DSPE sodium is a PEG lipid that can improve the delivery efficiency and tissue specificity of poorly soluble drugs. m-PEG3000-DSPE sodium can be used in drug delivery research.
    m-PEG3000-DSPE sodium
  • HY-W440925
    m-PEG5000-DSPE sodium 98.13%
    m-PEG5000-DSPE sodium is a PEG lipid that can improve the delivery efficiency and tissue specificity of poorly soluble drugs. m-PEG5000-DSPE sodium can be used in drug delivery research.
    m-PEG5000-DSPE sodium
  • HY-W440950
    Stearic acid-PEG2000-Mal 98%
    Stearic acid-PEG2000-Mal enables surface modification of various substrate through reaction between hydroxyl and ethoxyl silane. The polymer can be used for click chemistry with alkyne containing molecule.
    Stearic acid-PEG2000-Mal
  • HY-W440952
    Stearic acid-PEG5000-Mal 98%
    Stearic acid-PEG5000-Mal enables surface modification of various substrate through reaction between hydroxyl and ethoxyl silane. The polymer can be used for click chemistry with alkyne containing molecule.
    Stearic acid-PEG5000-Mal
  • HY-W440954
    Stearic acid-PEG2000-CH2CO2H 98%
    Stearic acid-PEG2000-CH2CO2H is a heterobifunctional polyPEG with 18-carbon aliphatic chain and carboxyl. The polymer has stearic acid as the hydrophobic tail and PEG as the hydrophilic chain, therefore it forms micelles in water. Carboxyl can react with amine in the presence of activator, such as HATU/EDC to generate a stable amide bond. Reagent grade, for research use only.
    Stearic acid-PEG2000-CH2CO2H
  • HY-W440996
    DOPE-PEG3400-Mal
    DOPE-PEG3400-Mal is a phospholipid. Phospholipids have good biocompatibility and significant amphiphilic characteristics, making them the main and suitable dosage form or excipient in drug formulations, thereby achieving better therapeutic effects. DOPE-PEG3400-Malcan be used in drug delivery research.
    DOPE-PEG3400-Mal
  • HY-W450116
    (E)-Pent-3-en-2-one 3102-33-8 ≥98.0%
    (E)-Pent-3-en-2-one is a volatile component that can be found in the fruit of Melicocca bijuga L[1].
    (E)-Pent-3-en-2-one
  • HY-W451440
    Butyne-DOTA-tris(t-butyl ester) 2125661-54-1 98.51%
    Butyne-DOTA-tris(t-butyl ester)is a bifunctional chelator (Bifunctional Chelator; BFC) and a macrocyclic DOTA derivative used for tumor pre-targeting. Butyne-DOTA-tris(t-butyl ester) can be used for conjugation of peptides and radionuclides.
    Butyne-DOTA-tris(t-butyl ester)