化学
结合
组织蛋白酶B
体外
组合化学
共轭体系
药品
生物化学
抗体
药理学
酶
有机化学
免疫学
聚合物
数学分析
生物
医学
数学
作者
Francesca Bryden,Camille Martin,Stéphanie Letast,Eva Llès,Inmaculada Viéitez-Villemin,Anaïs Rousseau,Cyril Colas,Marie Brachet‐Botineau,Émilie Allard-Vannier,Christel Larbouret,Marie‐Claude Viaud‐Massuard,Nicolas Joubert
摘要
Herein we describe the synthesis and evaluation of four novel HER2-targeting, cathepsin B-sensitive antibody-drug conjugates bearing a monomethylauristatin E (MMAE) cytotoxic payload, constructed via the conjugation of cleavable linkers to trastuzumab using a site-specific bioconjugation methodology. These linkers vary by both cleavable trigger motif and hydrophilicity, containing one of two cathepsin B sensitive dipeptides (Val-Cit and Val-Ala), and engendered with either hydrophilic or hydrophobic character via application of a PEG12 spacer. Through evaluation of physical properties, in vitro cytotoxicity, and receptor affinity of the resulting antibody-drug conjugates (ADCs), we have demonstrated that while both dipeptide triggers are effective, the increased hydrophobicity of the Val-Ala pair limits its utility within this type of linker. In addition, while PEGylation augments linker hydrophilicity, this change does not translate to more favourable ADC hydrophilicity or potency. While all described structures demonstrated excellent and similar in vitro cytotoxicity, the ADC with the ValCitPABMMAE linker shows the most promising combination of in vitro potency, structural homogeneity, and hydrophilicity, warranting further evaluation into its therapeutic potential.
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