结合
共轭体系
化学
赖氨酸
连接器
组合化学
抗体-药物偶联物
效应器
单克隆抗体
半胱氨酸
点击化学
体外
抗体
生物化学
立体化学
免疫学
生物
氨基酸
有机化学
酶
聚合物
数学分析
操作系统
计算机科学
数学
作者
Nicholas C. Yoder,Chen Bai,Daniel Tavares,Wayne C. Widdison,Kathleen R. Whiteman,Alan J. Wilhelm,Sharon D. Wilhelm,Molly A. McShea,Erin K. Maloney,Olga Ab,Lintao Wang,Shan Jin,Hans K. Erickson,Thomas A. Keating,John M. Lambert
标识
DOI:10.1021/acs.molpharmaceut.9b00529
摘要
Antibody-drug conjugates are an emerging class of cancer therapeutics constructed from monoclonal antibodies conjugated with small molecule effectors. First-generation molecules of this class often employed heterogeneous conjugation chemistry, but many site-specifically conjugated ADCs have been described recently. Here, we undertake a systematic comparison of ADCs made with the same antibody and the same macrocyclic maytansinoid effector but conjugated either heterogeneously at lysine residues or site-specifically at cysteine residues. Characterization of these ADCs in vitro reveals generally similar properties, including a similar catabolite profile, a key element in making a meaningful comparison of conjugation chemistries. In a mouse model of cervical cancer, the lysine-conjugated ADC affords greater efficacy on a molar payload basis. Rather than making general conclusions about ADCs conjugated by a particular chemistry, we interpret these results as highlighting the complexity of ADCs and the interplay between payload class, linker chemistry, target antigen, and other variables that determine efficacy in a given setting.
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