前列腺癌
癌症研究
医学
抗原
抗体-药物偶联物
癌症
人源化抗体
癌细胞
免疫疗法
抗体
药代动力学
谷氨酸羧肽酶Ⅱ
单克隆抗体
旁观者效应
封锁
连接器
抗药性
药品
肿瘤科
癌症免疫疗法
前列腺
细胞毒性
前列腺特异性抗原
转移
循环肿瘤细胞
生物信息学
结合
靶向治疗
药理学
拓扑异构酶
治疗指标
CD44细胞
雄激素剥夺疗法
放射免疫疗法
内科学
作者
Yao Xu,Fu Li,Zhiyu Cui,Hongmei Xie,Liang Xu,Yihui Lin,Tete Li,Nan Li,Dechen Cao,Weiming He,Wenqiang Zhai,X Wang,Shu Zhang,Haizhou Zhang,Fanglong Yang,Siqin Wang,Lei Jin,John L. Xu
标识
DOI:10.1158/1535-7163.mct-26-0395
摘要
Antibody-drug conjugate (ADC) has rapidly transformed the treatment landscape for solid tumors; however, due to heterogeneity in target antigen expression, suboptimal efficacy and emergence of acquired resistance present significant challenges to the development of curative ADCs for cancers. Here, we report the preclinical evaluation of GenSci143, a novel B7-H3 × PSMA-directed bispecific ADC (BsADC), designed to overcome tumor antigen heterogeneity-associated drug resistance for the treatment of metastatic castration-resistant prostate cancer (mCRPC). GenSci143 comprises a highly active topoisomerase 1 inhibitor payload conjugated to a dual-targeting antibody via a plasma-stable linker to minimize off-target toxicity. Gene profiling analysis reveals high co-expression of B7-H3 and PSMA in prostate cancer (PCa), laying the biological basis of dual targeting strategy. In vitro, GenSci143 exhibited strong binding, efficient internalization, and potent cytotoxicity against PCa cells expressing either or both target antigens, as well as a robust bystander killing effect, outperformed single-target benchmark ADCs that are currently in clinical development. In multiple cancer cell line-derived and patient-derived xenograft (CDX/PDX) models of PCa, GenSci143 induced profound tumor regression and demonstrated superior antitumor activity vs. competitor ADCs. Furthermore, GenSci143 displayed excellent plasma stability and favorable pharmacokinetic properties in non-human primates. The compelling preclinical efficacy across cancer models with varying levels of target antigen expression and its exceptional plasma stability support the translational relevance of GenSci143. These results indicate that GenSci143 is a promising therapeutic candidate for castration resistant PCa and potentially other malignancies, warranting its further clinical development.
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