结合
化学
抗体-药物偶联物
立体化学
表皮生长因子受体
西妥昔单抗
组合化学
组织蛋白酶B
生物物理学
劈理(地质)
表皮生长因子
受体
恶唑酮
结构-活动关系
毒素
单克隆抗体
作用机理
敌手
肽
寡肽
抗体
四肽
生物活性
抗癌药
作者
Hui Tian,Wencong Pan,Huaihuai Shi,Ximing Shao,Jiayu Sun,Jiaming Liang,Bichun Chen,Binghua Cheng,Ke Liu,Guiyang Yao,Wu Su,Hongxia Li,Lijing Fang
标识
DOI:10.1021/acs.jmedchem.5c02941
摘要
-methylated cyclodepsipeptide [MeAla3-MeAla6]-coibamide (CA) was selected as a novel toxin for ADC construction due to its potent toxicity and unique mechanism of action. Using a quaternary ammonium salt approach, two linker-payload variants, MC-VA-PAB-CA and MC-GGFG-PAB-CA, with distinct cathepsin B (CTB)-cleavable linkers, were synthesized and assessed. Among them, MC-GGFG-PAB-CA demonstrated higher enzyme-responsive cleavage efficiency and superior plasma stability and was selected for conjugation with the epidermal growth factor receptor (EGFR) antibody cetuximab (Ctx), resulting in the formation of Ctx-CA. This conjugate exhibited EGFR-dependent antitumor activity, a pronounced "bystander killing effect", and a significant tumor suppression effect in mouse models. Furthermore, the applicability of this conjugation strategy was confirmed through validation with the HER2 antibody. These findings suggest that CA is a promising weapon for next-generation ADCs.
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