FGFR2 Degrader
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FGFR2 Degrader (5)
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BR-cpd7
0 ImagesCat. No.: HY-163705Purity: 98.01%BR-cpd7 is an orally active, selective PROTAC degrader targeting FGFR1 and FGFR2, with a DC50 of 2.2 nM against FGFR1. BR-cpd7 reduces FGFR signaling. BR-cpd7 induces cell cycle arrest and selectively blocks the proliferation of FGFR1/FGFR2-dependent tumor cells. BR-cpd7 exhibits significant antitumor efficacy in FGFR1-dependent lung cancer animal models, while achieving complete depletion of FGFR1. BR-cpd7 can be used for cancer-related research.
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August 31
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August 31
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DGY-09-192
0 ImagesDGY-09-192 is a PROTAC FGFR1/2 degrader (FGFR1: DC50 = 4.35 nM; FGFR2: DC50 = 70 nM). DGY-09-192 preferentially degrades wild-type FGFR1/2 and multiple FGFR2 fusion proteins (including FGFR2-PHGDH and FGFR2-OPTN). DGY-09-192 suppresses downstream FGFR signaling (reducing phosphorylation of FRS2 Y196 and ERK1/2 T202/Y204) in vitro and vivo. DGY-09-192 can be used for the study of FGFR-driven cancers.
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August 31
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LC-MG-10
0 ImagesCat. No.: HY-184322LC-MG-10 is a selective molecular glue degrader targeting FGFR2, with a DC50 of 230.2 nM in KATO III cells. LC-MG-10 induces proteasomal degradation of FGFR2 via a covalent molecular glue mechanism. LC-MG-10 inhibits cancer cell proliferation. LC-MG-10 suppresses FGFR2-mediated PI3K/AKT and MAPK/ERK signaling pathways. LC-MG-10 can be used in studies related to gastric cancer.
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August 31
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LC-MG-5
0 ImagesCat. No.: HY-184321LC-MG-5 is a selective molecular glue degrader targeting FGFR2, with a DC50 of 231.7 nM in KATO III cells. LC-MG-5 induces proteasomal degradation of FGFR2 in a DCAF16-dependent manner via a covalent molecular glue mechanism. LC-MG-5 inhibits cancer cell proliferation. LC-MG-5 suppresses PI3K/AKT and MAPK/ERK signaling pathways mediated by FGFR2. LC-MG-5 can be used in the research of gastric cancer.
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CYB-5067
0 ImagesCat. No.: HY-184598CYB-5067 is a FGFR molecular glue degrader with a DC50 of 27 nM against FGFR2. CYB-5067 inhibits FGFR1, FGFR3, FGFR4 and downstream FGFR signaling pathways, induces antiproliferative activity in vitro, and exhibits sustained target protein inhibition in vivo without obvious hook effect. CYB-5067 shows significant tumor growth inhibitory activity in the ETV6-FGFR2 fusion Ba/F3 xenograft model. CYB-5067 can be used for the research of FGFR-driven cancers.
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