化学
连接器
体内
结合
噬菌体展示
药理学
铅化合物
组合化学
化学合成
药品
结构-活动关系
生物化学
体外
肽
数学分析
生物技术
数学
操作系统
生物
计算机科学
作者
Gemma Mudd,Amy Brown,Liuhong Chen,Katerine Van Rietschoten,Sophie Watcham,Daniel P. Teufel,Silvia Pavan,Rachid Lani,Philip Huxley,Gavin Bennett
标识
DOI:10.1021/acs.jmedchem.9b02129
摘要
Bicycles are constrained bicyclic peptides that represent a promising binding modality for use in targeted drug conjugates. A phage display screen against EphA2, a receptor tyrosine kinase highly expressed in a number of solid tumors, identified a number of Bicycle families with low nanomolar affinity. A Bicycle toxin conjugate (BTC) was generated by derivatization of one of these Bicycles with the potent cytotoxin DM1 via a cleavable linker. This BTC demonstrated potent antitumor activity in vivo but was poorly tolerated, which was hypothesized to be the result of undesired liver uptake caused by poor physicochemical properties. Chemical optimization of a second Bicycle, guided by structural biology, provided a high affinity, metabolically stable Bicycle with improved physicochemical properties. A BTC incorporating this Bicycle also demonstrated potent antitumor activity and was very well tolerated when compared to the initial BTC. Phage display selection followed by chemical optimization of Bicycles can deliver potent drug conjugates with favorable pharmaceutical properties.
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