p62 Inhibitor
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p62 Inhibitor (24)
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Nur77 modulator 3
0 ImagesNur77 modulator 3 is a Nur77 modulator. Nur77 modulator 3 induces Nur77 expression, inhibits hepatic stellate cells (HSCs) activation, and reduces extracellular matrix (ECM) deposition. Nur77 modulator 3 enhances Nur77-denpendent autophagic flux and significantly inhibits the mTORC1 signaling pathway. Nur77 modulator 3 ameliorates HSCs activation, inflammation and hepatic fibrosis in vivo.
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August 31
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August 31
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ICSN3250
0 ImagesReferencia número: HY-112774No. CAS: 1561902-73-5ICSN3250 is a halitulin analogue and specific mTORC1 inhibitor. ICSN3250 directly binds to mTOR's FRB domain and displaces phosphatidic acid (PA), reversing mTORC1 activation. ICSN3250 shows high cytotoxicity in cancer cells (nanomolar concentration) through a caspase-independent cell death mechanism. ICSN3250 specifically inhibits the mTORC1 pathway, inducing autophagy and G0-G1 cell-cycle arrest in cancer cells. ICSN3250 can be used for the study of cancer.
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August 31
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Keap1-p-p62-IN-1
0 ImagesReferencia número: HY-184204Keap1-p-p62-IN-1 is a potent and selective Keap1-p-p62 inhibitor with an IC50 of 0.11 μM. Keap1-p-p62-IN-1 shows 18.73-fold selectivity over Keap1-Nrf2 interaction. Keap1-p-p62-IN-1 normalizes Nrf2 ubiquitination, sensitizes cells to Sorafenib (HY-10201)-induced ferroptosis. Keap1-p-p62-IN-1 can be used for the research of p62 aberrant hepatocellular carcinoma.
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August 31
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Atiprimod hydrochloride
0 ImagesReferencia número: HY-110102No. CAS: 130065-61-1Synonyms: Azaspirane hydrochloride; SKF 106615-12 hydrochloride; SKF 106615Atiprimod (Azaspirane) hydrochloride is a STAT3 inhibitor with antitumor, anti-inflammatory, and anti-angiogenic activities. Atiprimod blocks the signaling pathways of IL-6 and VEGF by inhibiting the phosphorylation of signal transducer and activator of STAT3. Atiprimod blocks the JAK-STAT signaling pathway by inhibiting the phosphorylation of JAK2 and JAK3. Atiprimod also inhibits cell proliferation, induces cell cycle arrest, and induces autophagy and apoptosis. Atiprimod triggers persistent ER stress-mediated apoptosis in breast cancer cells by activating the PERK/eIF2α/ATF4/CHOP axis and inhibiting the nuclear translocation of STAT3/NF-κB. Atiprimod shows great anti-tumor activities in tumor xenograft mouse models. Atiprimod can be used for the study of pituitary adenoma, breast cancer, multiple myeloma and acute myeloid leukemia (AML).
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