焦点粘着
酪氨酸激酶
癌症研究
药物发现
激酶
靶向治疗
受体酪氨酸激酶
药物靶点
酪氨酸激酶抑制剂
PTK2
医学
信号转导
生物信息学
计算生物学
药品
抗癌药
癌症治疗
生物
威罗菲尼
血小板源性生长因子受体
合理设计
化学
酪氨酸
癌症
药物开发
化学生物学
过度活跃
原癌基因酪氨酸蛋白激酶Src
卵巢癌
作者
Bingbing Chen,Rui-Peng Feng,Jin-Bo Niu,Jian Song,Cui Yuan-Bo,Sai‐Yang Zhang
标识
DOI:10.1080/13543776.2026.2735861
摘要
INTRODUCTION: Focal adhesion kinase (FAK) is a non-receptor tyrosine kinase that transduces signals from integrins, receptor tyrosine kinases, and growth factors to orchestrate cell adhesion, migration, and survival. Aberrant FAK hyperactivation promotes tumor proliferation, invasion, anti-apoptosis, and chemoresistance. Consequently, the recent U.S. FDA approval of the FAK inhibitor defactinib combined with avutometinib for recurrent KRAS-mutant low‑grade serous ovarian cancer (LGSOC) validates FAK as a clinically actionable anticancer target. AREAS COVERED: This review discusses recent advances in FAK inhibitor development, focusing on small-molecule patents published from January 2020 to August 2026. A systematic search of SciFinder and WIPO databases was conducted for this period. It categorizes these novel inhibitors into several classes and summarizes their structural features, biological activities, design strategies, and structure-activity relationships (SAR). EXPERT OPINION: Recent advances in FAK drug discovery have driven a transition from conventional kinase inhibition toward broader FAK pathway modulation, including improved inhibitors, dual-target strategies, and targeted protein degradation. The clinical success of defactinib-based combination therapy validates the therapeutic potential of FAK targeting, while emerging approaches offer opportunities to overcome resistance. Future progress will depend on biomarker-guided patient selection, rational combination regimens, and exploration of non-catalytic FAK functions to achieve more effective and durable therapies.
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