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Results for "

deprotonating

" in MedChemExpress (MCE) Product Catalog:

7

Inhibitors & Agonists

1

Fluorescent Dye

2

Biochemical Assay Reagents

3

Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-W088065

    Biochemical Assay Reagents Others
    Sodium formate is a biochemical assay reagent. Sodium formate can react with zinc sources (such as ZnCl2) on the surface of alpha alumina support to form a zinc oxide layer. Sodium formate acts as a deprotonating agent, promoting the deprotonation of ligands (such as 2-methylimidazole) at high temperatures. Sodium formate provides the required reducing force in the catalytic oxidation of methane to methanol by methane monooxygenase (sMMO) and inhibits further oxidation of methanol .
    Sodium formate
  • HY-W088065S2

    Isotope-Labeled Compounds Others
    Sodium formate-d is the deuterium labeled Sodium formate.Sodium formate is a biochemical assay reagent. Sodium formate can react with zinc sources (such as ZnCl2) on the surface of alpha alumina support to form a zinc oxide layer. Sodium formate acts as a deprotonating agent, promoting the deprotonation of ligands (such as 2-methylimidazole) at high temperatures. Sodium formate provides the required reducing force in the catalytic oxidation of methane to methanol by methane monooxygenase (sMMO) and inhibits further oxidation of methanol .
    Sodium formate-d
  • HY-W088065S

    Sodium [13C]formate; Sodium formate-13C

    Isotope-Labeled Compounds Others
    Formate- 13C (sodium) is the 13C labeled Sodium formate.Sodium formate is a biochemical assay reagent. Sodium formate can react with zinc sources (such as ZnCl2) on the surface of alpha alumina support to form a zinc oxide layer. Sodium formate acts as a deprotonating agent, promoting the deprotonation of ligands (such as 2-methylimidazole) at high temperatures. Sodium formate provides the required reducing force in the catalytic oxidation of methane to methanol by methane monooxygenase (sMMO) and inhibits further oxidation of methanol .
    Formate-13C sodium
  • HY-W088065S1

    Isotope-Labeled Compounds Others
    Sodium formate- 13C,d1 is the deuterium and 13C labeled Sodium formate.Sodium formate is a biochemical assay reagent. Sodium formate can react with zinc sources (such as ZnCl2) on the surface of alpha alumina support to form a zinc oxide layer. Sodium formate acts as a deprotonating agent, promoting the deprotonation of ligands (such as 2-methylimidazole) at high temperatures. Sodium formate provides the required reducing force in the catalytic oxidation of methane to methanol by methane monooxygenase (sMMO) and inhibits further oxidation of methanol .
    Sodium formate-13C,d1
  • HY-W040144

    Fluorescent Dye Others
    Bromocresol green is a pH-sensitive triphenylmethane dye commonly used for the determination of protein and albumin in serum. Bromocresol green is a bio-based dye with a yellow-green to blue-green color. Bromocresol green turns yellow (λmax=435 nm, protonated form) when placed in acidic solution (e.g. pH=4.15), and turns blue in basic solution (λmax=615 nm, deprotonated form). Bromocresol green is widely used as a pH indicator in the field of biochemical analysis. In addition, Bromocresol green is also used to detect the concentration of molecules such as creatinine, and to judge the viability of cells .
    Bromocresol green
  • HY-D0009

    Fluorescent Dye Others
    Bromocresol green sodium is an anionic dye. Bromocresol green sodium can be used for pH indication and DNA agarose gel electrophoresis. Bromocresol green sodium is also used in mammalian albumin measurement. Bromocresol green sodium deprotonates and produces the monoanionic form of yellow colour at lower pH (acidic condition), and produces dianionic blue colour at the basic condition .
    Bromocresol green sodium
  • HY-113658

    Endogenous Metabolite Others
    ts-SA is a carbonic anhydrase (CA) inhibitor with activity against seven human CA homologues. ts-SA can bind to the Zn(II) ion in the enzyme active site in a deprotonated form. The organic skeleton of ts-SA extends in the enzyme cavity and participates in multiple interactions with amino acid residues and water molecules. Due to its structural differences, the inhibitory performance of ts-SA is significantly better than that of another pyridine derivative. ts-SA exhibits low nanomolar inhibitory activity and is a multi-target CA inhibitor .
    ts-SA

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