结合
连接器
化学
缬氨酸
瓜氨酸
抗体
天冬氨酸
氨基酸
生物化学
精氨酸
生物
免疫学
数学
计算机科学
操作系统
数学分析
作者
Yasuaki Anami,Chisato M. Yamazaki,Wei Xiong,Xun Gui,Ningyan Zhang,Zhiqiang An,Kyoji Tsuchikama
标识
DOI:10.1038/s41467-018-04982-3
摘要
Valine-citrulline linkers are commonly used as enzymatically cleavable linkers for antibody-drug conjugates. While stable in human plasma, these linkers are unstable in mouse plasma due to susceptibility to an extracellular carboxylesterase. This instability often triggers premature release of drugs in mouse circulation, presenting a molecular design challenge. Here, we report that an antibody-drug conjugate with glutamic acid-valine-citrulline linkers is responsive to enzymatic drug release but undergoes almost no premature cleavage in mice. We demonstrate that this construct exhibits greater treatment efficacy in mouse tumor models than does a valine-citrulline-based variant. Notably, our antibody-drug conjugate contains long spacers facilitating the protease access to the linker moiety, indicating that our linker assures high in vivo stability despite a high degree of exposure. This technology could add flexibility to antibody-drug conjugate design and help minimize failure rates in pre-clinical studies caused by linker instability.
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