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Transmembrane transport

" in MedChemExpress (MCE) Product Catalog:

14

Inhibitors & Agonists

1

Fluorescent Dye

1

Biochemical Assay Reagents

3

Natural
Products

1

Isotope-Labeled Compounds

3

Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-164036

    Antibiotic Bacterial Infection
    Lolamicin is an orally effective inhibitor that specifically targets the Gram-negative bacteria lipoprotein transport system LolCDE complex. It selectively inhibits the transmembrane transport of outer membrane lipoproteins by competitively binding to lipoprotein binding sites. Lolamicin destroys the integrity of the bacterial outer membrane, leading to cell death, and has both bactericidal and antibacterial activity. It has significant effects on multidrug-resistant Enterobacteriaceae pathogens (such as Escherichia coli and Klebsiella pneumoniae). Lolamicin can be used to inhibit the study of acute pneumonia, sepsis and other infections caused by Gram-negative bacteria .
    Lolamicin
  • HY-145603

    VX-121

    CFTR Chloride Channel Neurological Disease
    Vanzacaftor (VX-121) is an orally active noval corrector of Cystic fibrosis transmembrane conductance regulator (CFTR). Vanzacaftor improves processing and trafficking of CFTR protein as well as increases chloride transport in triple combined with Tezacaftor (HY-15448) and Deutivacaftor. Vanzacaftor-Tezacaftor-Deutivacaftor is safe and well tolerated, improving lung function, respiratory symptoms, and CFTR function with cystic fibrosis, which is promising for research in the field of cystic fibrosis diseases .
    Vanzacaftor
  • HY-N4104

    Agaricinic Acid

    Mitochondrial Metabolism Bacterial Calcium Channel Infection Metabolic Disease
    Agaric acid (Agaricinic Acid) is an orally active inhibitor of adenine nucleotide translocase found in specific fungi. Agaric acid can inhibit the biofilm formation of various bacteria such as Salmonella. Agaric acid can also induce mitochondrial permeability transition, prompting mitochondria to release Ca 2+, disrupting the transmembrane potential, and causing mitochondrial swelling. In addition, Agaric acid can also inhibit citrate transport in liver mitochondria and participate in the inhibition of fatty acid synthesis, affecting multiple metabolic processes .
    Agaric acid
  • HY-148033

    N,N,N-Trimethylchitosan

    Drug Derivative Others
    Trimethyl chitosan (N,N,N-Trimethylchitosan) is a water-soluble multifunctional polymer and a derivative of Chitosan (HY-B2144A). Trimethyl chitosan targets the absorption enhancing proteins of tight junctions of intestinal and mucosal epithelial cells, induces tight junction protein rearrangement, and increases intercellular permeability. Trimethyl chitosan can stimulate the activity of promoting transmembrane transport of hydrophilic drugs (such as peptides and proteins) and can be used for drug delivery and synthesis of nanoparticles .
    Trimethyl chitosan
  • HY-W854295

    PtdIns-(1,2-dioctanoyl) (sodium)

    P-glycoprotein Cancer
    Phosphatidylinositol-1,2-dioctanoyl sodium significantly inhibits transmembrane P-gp transport in a reproducible, cell line-independent, and substrate-independent manner. Phosphatidylinositol-1,2-dioctanoyl sodium plays an important role in signal transduction and cell movement .
    Phosphatidylinositol-1,2-dioctanoyl sodium
  • HY-139786

    ION-827359

    Sodium Channel Others
    Cofirasersen is designed to reduce the expression of ENaC in the lung. ENaC is a sodium transport channel and believed to be hyperactive in cystic fibrosis, which is caused by mutations in the cystic fibrosis transmembrane regulator gene.
    Cofirasersen
  • HY-139786A

    ION-827359 sodium

    Sodium Channel Others
    Cofirasersen sodium is designed to reduce the expression of ENaC in the lung. ENaC is a sodium transport channel and believed to be hyperactive in cystic fibrosis, which is caused by mutations in the cystic fibrosis transmembrane regulator gene.
    Cofirasersen sodium
  • HY-120649

    Biochemical Assay Reagents Others
    SKM 4-45-1 is an analog of Anandamide (AEA)(HY-10863). SKM 4-45-1 is a fluorescent substrate, that can be used to study the transmembrane carrier-mediated transport of AEA across cell membranes .
    SKM 4-45-1
  • HY-168772

    H-Gly-Pro-OH TFA

    Amino Acid Derivatives Others
    Glycyl-L-Proline TFA (H-Gly-Pro-OH TFA) is a dipeptide, which is composed of a glycine and a L-proline. Glycyl-L-Proline TFA can be used in research about the co-relationship between transmembrane potential/proton gradient and intestinal transport .
    Glycyl-L-Proline TFA
  • HY-117187

    CFTR Others
    Corr4A is a chemical corrector, which can be used for cystic fibrosis. Corr4A interacts directly with the cystic fibrosis transmembrane conductance regulator (CFTR) or affects indirectly its folding process. Corr4A increases the expression of CFTR ΔF508 on the cell surface, thereby improving its transport to the plasma membrane and increasing the stability of the rescued mutant protein .
    Corr4A
  • HY-150407

    Ligands for Target Protein for PROTAC Autophagy Others Neurological Disease Cancer
    TSPO ligand-1 is the ligand of AUTAC4 (HY-134640) that can be used in the synthesis of PROTACs. TSPO ligand-1 is a mitochondrial outer membrane transmembrane structural domain protein can bind to AUTAC4 and regulate mitochondrial autophagy to promote targeted mitochondrial renewal. TSPO ligand-1 is also involved in the transport of cholesterol from the outer to inner mitochondrial membrane and serves as a sensitive biomarker of brain injury and neurodegeneration .
    TSPO ligand-1
  • HY-113329

    Taurocyamine

    Endogenous Metabolite Metabolic Disease
    Guanidinoethyl sulfonate is an orally available, blood-brain permeable competitive inhibitor of taurine transporters and a competitive antagonist of glycine receptors (GlyR) (IC50=565 μM). Guanidinoethyl sulfonate has both weak agonist and antagonist effects on GABAA receptors. Guanidinoethyl sulfonate inhibits taurine transmembrane transport and competitively binds to the GlyR ligand binding domain, thereby blocking glycine-mediated chloride influx, and may regulate brain pH to exert neuroprotective effects. Guanidinoethyl sulfonate can be used for neuroprotection studies of ischemic brain injury .
    Guanidinoethyl sulfonate
  • HY-N4104R

    Agaricinic Acid (Standard)

    Mitochondrial Metabolism Bacterial Calcium Channel Infection Metabolic Disease
    Agaric acid (Standard) (Agaricinic Acid (Standard)) is the analytical standard of Agaric acid (HY-N4104). This product is intended for research and analytical applications. Agaric acid (Agaricinic Acid) is an orally active inhibitor of adenine nucleotide translocase found in specific fungi. Agaric acid can inhibit the biofilm formation of various bacteria such as Salmonella. Agaric acid can also induce mitochondrial permeability transition, prompting mitochondria to release Ca 2+, disrupting the transmembrane potential, and causing mitochondrial swelling. In addition, Agaric acid can also inhibit citrate transport in liver mitochondria and participate in the inhibition of fatty acid synthesis, affecting multiple metabolic processes.
    Agaric acid (Standard)
  • HY-145603S

    VX-121-d4

    Isotope-Labeled Compounds CFTR Chloride Channel Neurological Disease
    Vanzacaftor-d4 (VX-121-d4) is the deuterium labeled Vanzacaftor (HY-145603). Vanzacaftor is an orally active noval corrector of Cystic fibrosis transmembrane conductance regulator (CFTR). Vanzacaftor improves processing and trafficking of CFTR protein as well as increases chloride transport in triple combined with Tezacaftor (HY-15448) and Deutivacaftor. Vanzacaftor-Tezacaftor-Deutivacaftor is safe and well tolerated, improving lung function, respiratory symptoms, and CFTR function with cystic fibrosis, which is promising for research in the field of cystic fibrosis diseases .
    Vanzacaftor-d4

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