(R,E)-N-(7-氯-1-(1- [4-(二甲基氨基)丁-2-烯酰基]氮杂潘-3-基)-1 H-苯并[ d ]咪唑-2-的发现yl)-2-methylisonicotinamide(EGF816),一种新颖,有效且具有WT致癌性(L858R,ex19del)和抗性(T790M)EGFR突变体的共价抑制剂,用于治疗EGFR突变型非小细胞肺癌
(R,E)-N-(7-氯-1-(1- [4-(二甲基氨基)丁-2-烯酰基]氮杂潘-3-基)-1 H-苯并[ d ]咪唑-2-的发现yl)-2-methylisonicotinamide(EGF816),一种新颖,有效且具有WT致癌性(L858R,ex19del)和抗性(T790M)EGFR突变体的共价抑制剂,用于治疗EGFR突变型非小细胞肺癌
[EN] COMPOUNDS AND COMPOSITIONS FOR MODULATING EGFR ACTIVITY<br/>[FR] COMPOSÉS ET COMPOSITIONS DESTINÉS À LA MODULATION DE L'ACTIVITÉ DE L'EGFR
申请人:IRM LLC
公开号:WO2013184766A1
公开(公告)日:2013-12-12
The invention provides compounds and pharmaceutical compositions thereof, which are useful for modulating EGFR activity, as well as methods for using such compounds to treat, ameliorate or prevent a condition associated with abnormal or deregulated EGFR activity.
Compounds and Compositions for Modulating EGFR Activity
申请人:Lelais Gerald
公开号:US20150152083A1
公开(公告)日:2015-06-04
The invention provides compounds and pharmaceutical compositions thereof, which are useful for modulating EGFR activity, as well as methods for using such compounds to treat, ameliorate or prevent a condition associated with abnormal or deregulated EGFR activity.
Discovery of (<i>R</i>,<i>E</i>)-<i>N</i>-(7-Chloro-1-(1-[4-(dimethylamino)but-2-enoyl]azepan-3-yl)-1<i>H</i>-benzo[<i>d</i>]imidazol-2-yl)-2-methylisonicotinamide (EGF816), a Novel, Potent, and WT Sparing Covalent Inhibitor of Oncogenic (L858R, ex19del) and Resistant (T790M) EGFR Mutants for the Treatment of EGFR Mutant Non-Small-Cell Lung Cancers
作者:Gérald Lelais、Robert Epple、Thomas H. Marsilje、Yun O. 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 Johnson、Yong Jia、Shailaja Kasibhatla、Chun Li、John Isbell、Glen Spraggon、Steven Bender、Pierre-Yves Michellys
DOI:10.1021/acs.jmedchem.5b01985
日期:2016.7.28
decade, first and secondgeneration 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