T790米
化学
突变体
限制
表皮生长因子受体抑制剂
耐受性
药理学
体内
表皮生长因子受体
癌症研究
生物化学
遗传学
不利影响
基因
医学
生物
吉非替尼
受体
工程类
机械工程
作者
G. Lelais,Robert Epple,Thomas H. Marsilje,Yun Oliver Long,Matthew McNeill,Bei Chen,Wenshuo Lu,Jaganmohan Anumolu,Sangamesh Badiger,Badry Bursulaya,Michael DiDonato,Rina Fong,Jose Juarez,Jie Li,Mari Manuia,Daniel E. Mason,Perry Gordon,Todd Groessl,Kevin C. Johnson,Yong Jia
标识
DOI:10.1021/acs.jmedchem.5b01985
摘要
Over the past decade, first and second generation EGFR inhibitors have significantly improved outcomes for lung cancer patients with activating mutations in EGFR. However, both resistance through a secondary T790M mutation at the gatekeeper residue and dose-limiting toxicities from wild-type (WT) EGFR inhibition ultimately limit the full potential of these therapies to control mutant EGFR-driven tumors and new therapies are urgently needed. Herein, we describe our approach toward the discovery of 47 (EGF816, nazartinib), a novel, covalent mutant-selective EGFR inhibitor with equipotent activity on both oncogenic and T790M-resistant EGFR mutations. Through molecular docking studies we converted a mutant-selective high-throughput screening hit (7) into a number of targeted covalent EGFR inhibitors with equipotent activity across mutants EGFR and good WT-EGFR selectivity. We used an abbreviated in vivo efficacy study for prioritizing compounds with good tolerability and efficacy that ultimately led to the selection of 47 as the clinical candidate.
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