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Results for "

ER-stress-induced

" in MedChemExpress (MCE) Product Catalog:

9

Inhibitors & Agonists

2

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-128707
    Z-LEVD-FMK
    2 Publications Verification

    Caspase Apoptosis Cancer
    Z-LEVD-FMK is a cell-permeable caspase-4 inhibitor. Z-LEVD-FMK blocks ER stress-induced apoptosis in cancer cells .
    Z-LEVD-FMK
  • HY-13433
    Thapsigargin
    Maximum Cited Publications
    69 Publications Verification

    Calcium Channel SARS-CoV Apoptosis Infection Cancer
    Thapsigargin, an endoplasmic reticulum (ER) stress inducer, is an inhibitor of microsomal Ca 2+-ATPase. Thapsigargin efficiently inhibits coronavirus (HCoV-229E, MERS-CoV, SARS-CoV-2) replication in different cell types .
    Thapsigargin
  • HY-101484A

    Sigma Receptor Neurological Disease
    NE-100 (hydrochloride) is a potent and selective sigma-1 receptor antagonist with an IC50 of 4.16 nM. NE-100 (hydrochloride) exerts antipsychotic activity in vivo[1]. NE-100 (hydrochloride) also suppresses ER stress-induced hippocampal cell death[2].
    NE-100 hydrochloride
  • HY-19934A

    TAS-117 hydrochloride

    Akt Apoptosis Autophagy Cancer
    Pifusertib (TAS-117) hydrochloride is a potent, selective, orally active allosteric Akt inhibitor (with IC50s of 4.8, 1.6, and 44 nM for Akt1, 2, and 3, respectively). Pifusertib hydrochloride triggers anti-myeloma activities and enhances fatal endoplasmic reticulum (ER) stress induced by proteasome inhibition. Pifusertib hydrochloride induces apoptosis and autophagy .
    Pifusertib hydrochloride
  • HY-136735

    IRE1 Neurological Disease Cancer
    IRE1α kinase-IN-1 is a highly selective IRE1α (ERN1) inhibitor, with an IC50 of 77 nM. IRE1α kinase-IN-1 displays 100-fold selectivity for IRE1α over the IRE1β isoform. IRE1α kinase-IN-1 inhibits ER stress-induced IRE1α oligomerization and autophosphorylation, and also inhibits IRE1α RNase activity (IC50=80 nM) .
    IRE1α kinase-IN-1
  • HY-W011241

    (8R,9S)-Cinchonine hydrochloride; LA40221 hydrochloride

    Apoptosis Parasite Cancer
    Cinchonine hydrochloride ((8R,9S)-Cinchonine hydrochloride) is a natural alkaloid present in Cinchona bark, with antimalarial activity. Cinchonine hydrochloride activates endoplasmic reticulum (ER) stress-induced apoptosis in human liver cancer cells .
    Cinchonine hydrochloride
  • HY-114611

    IRE1 Metabolic Disease
    BDM44768 is an inhibitior of IDE. BDM44768 exacerbates ER stress-induced IRE1 activation and promotes lipid accumulation in hepatocytes. BDM44768 potentiates activation of the IRE1 pathway in the liver and exacerbates liver lipid accumulation in an acute mice model of ER stress .
    BDM44768
  • HY-19934

    TAS-117

    Akt Apoptosis Autophagy Cancer
    Pifusertib (TAS-117) is a potent, selective, orally active allosteric Akt inhibitor (with IC50s of 4.8, 1.6, and 44 nM for Akt1, 2, and 3, respectively). Pifusertib triggers anti-myeloma activities and enhances fatal endoplasmic reticulum (ER) stress induced by proteasome inhibition. Pifusertib induces apoptosis and autophagy .
    Pifusertib
  • HY-159577

    PI3K mTOR Akt Cancer
    Nic-15 (compound 4n) is an anti-constrictive agent used to antagonize the hypovascularity of pancreatic tumors. The hypovascularity allows cancer cells to adapt to the nutrient-deficient tumor microenvironment and develop drug resistance. Nic-15 can regulate the PI3K/Akt/mTOR pathway and alleviate ER stress induced by Gemcitabine (HY-17026). Nic-15 can significantly inhibit the migration and colony formation of MIA PaCa-2 and PANC-1 pancreatic cancer cells. The combination of Nic-15 and Gemcitabine can effectively solve the problem of pancreatic tumor resistance. In an in vivo xenograft model, Nic-15 can significantly enhance the efficacy of Gemcitabine .
    Nic-15

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