WZ4002 is an irreversible inhibitor of the gatekeeper EGFR-T790M kinase.
WZ4002 is an irreversible inhibitor of the gatekeeper EGFR-T790M mutation that binds to the active conformation of the EGFR kinase forming a covalent bond with Cys 797.
WZ4002 is effective in the treatment of lung adenocarcinomas due to EGFR (epidermal growth factor receptor) mutations.[1]
Molecular cancer therapeutics, 15(11), 2586-2597 (2016-11-04)
AC0010 is a pyrrolopyrimidine-based irreversible EGFR inhibitor, structurally distinct from previously reported pyrimidine-based irreversible EGFR inhibitors, such as osimertinib and rociletinib. AC0010 selectively inhibits EGFR-active and T790M mutations with up to 298-fold increase in potency compared with wild-type EGFR. In
WZ4002, a third-generation EGFR inhibitor, can overcome anoikis resistance in EGFR-mutant lung adenocarcinomas more efficiently than Src inhibitors.
Sakuma Y, et al.
Laboratory Investigation; a Journal of Technical Methods and Pathology, 92(3), 371-371 (2012)
Biochemical and biophysical research communications, 503(2), 710-714 (2018-06-18)
The emergence of the T790M gatekeeper mutation in the Epidermal Growth Factor Receptor (EGFR) gene is an important mechanism that can lead to the acquired resistance to EGFR-targeted tyrosine kinase inhibitors such as erlotinib or gefitinib. These drugs have been
The clinical utility of approved EGFR small-molecule kinase inhibitors is plagued both by toxicity against wild-type EGFR and by metastatic progression in the central nervous system, a disease sanctuary site. Here, we report the discovery and preclinical efficacy of GNS-1486
Clinical cancer research : an official journal of the American Association for Cancer Research, 24(13), 3126-3136 (2018-04-06)
Purpose: Our aim was to test whether imaging with 18F-fluorothymidine (18F-FLT) PET/CT was able to detect the combined effects of EGFR and MET inhibitors in oncogene-driven non-small cell lung cancer (NSCLC) and to elucidate the mechanisms underlying the enhanced efficacy
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