连接器
马来酰亚胺
化学
结合
水解
组合化学
共轭体系
体内
分子内力
药品
药理学
立体化学
有机化学
聚合物
生物
操作系统
数学分析
生物技术
医学
计算机科学
数学
作者
Robert P. Lyon,Jocelyn R. Setter,Tim D. Bovee,Svetlana O. Doronina,Joshua H. Hunter,Martha E. Anderson,Cindy Balasubramanian,Steven Duniho,Chris Leiske,Fu Li,Peter D. Senter
摘要
Many antibody-drug conjugates (ADCs) are unstable in vivo because they are formed from maleimide-containing components conjugated to reactive thiols. These thiosuccinimide linkages undergo two competing reactions in plasma: elimination of the maleimide through a retro-Michael reaction, which results in loss of drug-linker from the ADC, and hydrolysis of the thiosuccinimide ring, which results in a derivative that is resistant to the elimination reaction. In an effort to create linker technologies with improved stability characteristics, we used diaminopropionic acid (DPR) to prepare a drug-linker incorporating a basic amino group adjacent to the maleimide, positioned to provide intramolecular catalysis of thiosuccinimide ring hydrolysis. This basic group induces the thiosuccinimide to undergo rapid hydrolysis at neutral pH and room temperature. Once hydrolyzed, the drug-linker is no longer subject to maleimide elimination reactions, preventing nonspecific deconjugation. In vivo studies demonstrate that the increased stability characteristics can lead to improved ADC antitumor activity and reduced neutropenia.
科研通智能强力驱动
Strongly Powered by AbleSci AI