化学
结合
连接器
组合化学
氨基甲酸酯
胺气处理
酰胺
药物输送
叔胺
小分子
立体化学
有机化学
生物化学
数学分析
操作系统
计算机科学
数学
作者
Leanna R. Staben,Stefan G. Koenig,Sophie M. Lehar,Richard Vandlen,Donglu Zhang,Josefa Chuh,Shang‐Fan Yu,Carl Ng,Jun Guo,Yanzhou Liu,Aimee Fourie-O’Donohue,MaryAnn Go,Xin Linghu,Nathaniel L. Segraves,Tao Wang,Jinhua Chen,BinQing Wei,Gail D. Lewis Phillips,Keyang Xu,Katherine R. Kozak
出处
期刊:Nature Chemistry
[Nature Portfolio]
日期:2016-10-17
卷期号:8 (12): 1112-1119
被引量:130
摘要
The reversible attachment of a small-molecule drug to a carrier for targeted delivery can improve pharmacokinetics and the therapeutic index. Previous studies have reported the delivery of molecules that contain primary and secondary amines via an amide or carbamate bond; however, the ability to employ tertiary-amine-containing bioactive molecules has been elusive. Here we describe a bioreversible linkage based on a quaternary ammonium that can be used to connect a broad array of tertiary and heteroaryl amines to a carrier protein. Using a concise, protecting-group-free synthesis we demonstrate the chemoselective modification of 12 complex molecules that contain a range of reactive functional groups. We also show the utility of this connection with both protease-cleavable and reductively cleavable antibody-drug conjugates that were effective and stable in vitro and in vivo. Studies with a tertiary-amine-containing antibiotic show that the resulting antibody-antibiotic conjugate provided appropriate stability and release characteristics and led to an unexpected improvement in activity over the conjugates previously connected via a carbamate.
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