化学
试剂
共轭体系
二硫键
连接器
结合
部分
共价键
组合化学
抗体-药物偶联物
抗体
木瓜蛋白酶
半胱氨酸
单克隆抗体
体内
立体化学
生物化学
有机化学
酶
免疫学
数学
计算机科学
聚合物
操作系统
生物
生物技术
数学分析
作者
George Badescu,Penny Bryant,Matthew Bird,Korinna Henseleit,Julia Swierkosz,Vimal Parekh,Rita Tommasi,Estera Pawlisz,Kosma Jurlewicz,Monika Farys,N. D. Camper,Xiaobo Sheng,Martin Fisher,R.Ya. Grygorash,Andrew F. Kyle,Amrita Abhilash,Mark Frigerio,Jeff Edwards,Antony Godwin
摘要
To improve both the homogeneity and the stability of ADCs, we have developed site-specific drug-conjugating reagents that covalently rebridge reduced disulfide bonds. The new reagents comprise a drug, a linker, and a bis-reactive conjugating moiety that is capable of undergoing reaction with both sulfur atoms derived from a reduced disulfide bond in antibodies and antibody fragments. A disulfide rebridging reagent comprising monomethyl auristatin E (MMAE) was prepared and conjugated to trastuzumab (TRA). A 78% conversion of antibody to ADC with a drug to antibody ratio (DAR) of 4 was achieved with no unconjugated antibody remaining. The MMAE rebridging reagent was also conjugated to the interchain disulfide of a Fab derived from proteolytic digestion of TRA, to give a homogeneous single drug conjugated product. The resulting conjugates retained antigen-binding, were stable in serum, and demonstrated potent and antigen-selective cell killing in in vitro and in vivo cancer models. Disulfide rebridging conjugation is a general approach to prepare stable ADCs, which does not require the antibody to be recombinantly re-engineered for site-specific conjugation.
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