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tubular phosphate reabsorption

" in MedChemExpress (MCE) Product Catalog:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-A0080
    Aminohippurate sodium
    4 Publications Verification

    Sodium p-aminohippurate; p-Aminohippuric acid sodium salt

    Biochemical Assay Reagents
    Aminohippurate sodium is a renal tubular transport inhibitor and a substrate for organic anion transporters. Aminohippurate sodium inhibits renal tubular reabsorption of phosphate and promotes increased urinary phosphate excretion. Aminohippurate sodium inhibits renal tubular reabsorption of vitamin C as well as the transport of glucose .
    Aminohippurate sodium
  • HY-156696

    Na+/H+ Exchanger (NHE) Metabolic Disease
    S3226 is a highly selective NHE-3 inhibitor (IC50<1 μM) that specifically blocks NHE-3-mediated sodium transport. S3226 significantly inhibits blastocyst formation and expansion in mouse embryos, and reduces fluid and electrolyte reabsorption in rat proximal tubules in a dose-dependent manner. S3226 effectively alleviates ischemia-induced acute renal failure by improving renal function parameters, reducing renal tubular injury and restoring intracellular pH homeostasis, without interfering with the normal tubuloglomerular feedback response. S3226 is widely used in studies of acute renal failure and related pathological mechanisms .
    S3226
  • HY-179107

    Amino acid Transporter Metabolic Disease
    SLC6A19-IN-3 (Compound 83-P1-P2) is a potent, selective and orally active SLC6A19 inhibitor with an IC50 of 28 nM. SLC6A19-IN-3 can block SLC6A19-mediated transmembrane transport of phenylalanine, reducing intestinal absorption of phenylalanine from food and renal tubular reabsorption of phenylalanine. SLC6A19-IN-3 can be used for the research of metabolic disease, such as phenylketonuria .
    SLC6A19-IN-3
  • HY-Y0282

    NSC 77384; Sanibrom 40

    Environmental Pollutants Neurological Disease
    Sodium bromide (NSC 77384; Sanibrom 40) is a GABA-ergic system modulator that crosses the blood-brain barrier, and it effectively reduces and blocks epileptiform discharges. Sodium bromide exerts significant anticonvulsant effects by enhancing GABA-ergic inhibitory functions, such as increasing the amplitude of inhibitory postsynaptic currents and paired-pulse inhibition. Sodium bromide specifically enhances stimulation-induced extracellular alkalosis without affecting baseline pH or subsequent acidosis processes. Sodium bromide exhibits species-specific pharmacokinetic characteristics, competes with chloride ions for renal tubular reabsorption sites, and serves as a marker for extracellular fluid volume. Sodium bromide can be used in the research of epilepsy and related neurological diseases .
    Sodium bromide

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