A Novel FGFR3‐Targeting Antibody‐Drug Conjugate Induces Tumor Cell Apoptosis through the cGAS–STING Pathway in Bladder Cancer

膀胱癌 癌症研究 喜树碱 体内 细胞凋亡 细胞毒性T细胞 化学 癌细胞 体外 癌症 细胞毒性 拓扑异构酶 旁观者效应 结合 细胞生长 化疗 细胞 细胞内 奥沙利铂 阿霉素 细胞培养 药理学 肿瘤微环境 治疗指标 抗体-药物偶联物 医学 拓扑异构酶抑制剂 免疫疗法 DNA损伤 内源性凋亡
作者
Shu Cui,Xiong-Fei Luo,Guangrui Fan,Jingqi Jiang,Ying-Ru Wang,Enguang Yang,Jun Ma,Ze Zhang,Yuhan Wang,Juan Wang,Dengtuo Wang,Hanzhang Wang,Liang Cheng,Junqiang Tian,Zhilong Dong,Ying‐Qian Liu,Zhiping Wang
出处
期刊:Advanced Science [Wiley]
卷期号:13 (4): e09933-e09933
标识
DOI:10.1002/advs.202509933
摘要

Antibody-drug conjugates (ADCs) emerge as a potent cancer therapeutic strategy by enabling precise antigen recognition and efficient intracellular delivery of cytotoxic payloads. In this study, 7-ethyl-9-fluorocamptothecin (A2), a camptothecin derivative, which demonstrates potent tumor-suppressive effects across cellular models, patient-derived organoids (PDOs), and cell line-derived xenograft/patient-derived xenograft (CDX/PDX) models is identified. Through pull-down/mass spectrometry analysis, MAD2L1 is identified as the direct target of A2. A2 specifically binds to the Lys73 site of MAD2L1, activating the cGAS-STING pathway and thereby inducing apoptosis in bladder cancer cells. To address the dose-limiting toxicity caused by A2's insufficient targeting capability, LZU-WZLYCS01, a novel FGFR3-targeting ADC for bladder cancer with A2 as its cytotoxic payload is developed. LZU-WZLYCS01 exhibits precise FGFR3-dependent targeting, with significantly reduced antitumor activity in both FGFR3-knockout cell models and xenograft models. Moreover, in vivo fluorescence imaging demonstrates the potent tumor-targeting capability of LZU-WZLYCS01. LZU-WZLYCS01 demonstrates remarkable bystander effects in an in vitro co-culture model, along with potent tumor growth inhibition in PDOs and CDX/PDX models while maintaining favorable safety. Notably, LZU-WZLYCS01 shows superior antitumor efficacy to gemcitabine-cisplatin (GC) chemotherapy and maintains significant activity in GC-resistant PDX models. These findings present a promising therapeutic candidate for targeted bladder cancer treatment.
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