PO.ET02.04 · 实验与分子治疗

YL252:一种整合免疫治疗、抗血管生成和细胞毒性的双功能PD-L1/VEGF靶向ADC

YL252: A dual-functional PD-L1/VEGF-targeting ADC integrating immunotherapy, anti-angiogenesis, and cytotoxicity

海报缩略图:YL252:一种整合免疫治疗、抗血管生成和细胞毒性的双功能PD-L1/VEGF靶向ADC
编号 5655 展板 25 时间 4/21 02:00–05:00 区域 Section 10 主讲 Wei Lian, PhD
分会场 Antibody-Drug Conjugates and Linker Engineering 4
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作者与单位 Authors & Affiliations

Wei Lian, Xinzhen Shi, Qing Zong, Hanwen Deng, Chun Deng, Tao Wang, Fang Xu, Shuaikun Wang, Tongtong Xue, Jiaqiang Cai

MediLink Therapeutics (Suzhou) Co., Ltd., Suzhou, China

摘要 Abstract

中文摘要
免疫检查点抑制剂与抗体药物偶联物(ADC)联合应用的临床成功,以及免疫治疗、抗血管生成治疗和化疗之间已确立的协同作用,支持开发多机制治疗策略。基于这一原理,我们开发了YL252,一种双功能ADC,旨在同时靶向PD-L1和VEGF,同时在肿瘤微环境内实现受控的载荷释放。YL252来源于肿瘤微环境可激活连接子平台,整合了一种专有的蛋白酶可裂解三肽连接子和一种新型DNA拓扑异构酶I抑制剂载荷。YL252结合PD-L1以调节免疫抑制,同时螯合可溶性VEGF,从而发挥抗血管生成作用。经工程化的药物抗体比(DAR)经过优化,以与抗PD-L1和抗VEGF单克隆抗体的临床相关暴露相匹配。我们对YL252进行了全面的非临床评估,包括理化性质、抗肿瘤疗效、药代动力学和安全性的评估。YL252在PD-L1表达的肿瘤细胞中表现出高效内化、强效细胞毒性和强旁观者效应。在异种移植模型中,YL252产生剂量依赖性肿瘤生长抑制,包括完全消退,且无可检测毒性。机制研究证实YL252有效阻断PD-L1信号传导,与免疫激活以及细胞毒性和抗血管生成活性相一致。食蟹猴药代动力学研究表明其系统稳定性高,表现为总抗体与偶联ADC谱重叠。重复给药毒理学研究确立了良好的安全性特征,治疗指数约为100,在包括肺、肝和肾在内的主要器官中无药物相关不良发现。总之,YL252是首个报告的能够同时阻断PD-L1、抑制VEGF驱动的血管生成并在肿瘤微环境中释放细胞毒性载荷的ADC,代表了一种整合免疫治疗、抗血管生成治疗和化疗机制的单药方法。
查看英文原文 English abstract
The clinical success of combining immune checkpoint inhibitors with antibody-drug conjugates (ADCs), as well as the well-established synergy among immunotherapy, anti-angiogenic therapy, and chemotherapy, supports the development of multi-mechanistic therapeutic strategies. Based on this rationale, we developed YL252, a dual-functional ADC designed to simultaneously target PD-L1 and VEGF while enabling controlled payload release within the tumor microenvironment. YL252 is derived from Tumor Microenvironment-Activable Linker platform, incorporating a proprietary protease-cleavable tripeptide linker and a novel DNA topoisomerase I inhibitor payload. YL252 binds PD-L1 to modulate immune suppression, while also sequestering soluble VEGF, thereby exerting anti-angiogenic effects. The engineered drug-to-antibody ratio (DAR) is optimized to align with clinically relevant exposures of anti-PD-L1 and anti-VEGF monoclonal antibodies. We conducted a comprehensive nonclinical evaluation of YL252, including assessments of physicochemical properties, antitumor efficacy, pharmacokinetics, and safety. YL252 showed efficient internalization, potent cytotoxicity, and strong bystander effects in PD-L1-expressing tumor cells. In xenograft models, YL252 produced dose-dependent tumor growth inhibition, including complete regressions, without detectable toxicity. Mechanistic studies confirmed that YL252 effectively blocked PD-L1 signaling, consistent with immune activation alongside cytotoxic and antiangiogenic activity. Pharmacokinetic studies in cynomolgus monkeys demonstrated high systemic stability, as shown by overlapping total antibody and conjugated ADC profiles. Repeat-dose toxicology studies established a favorable safety profile, with a therapeutic index of approximately 100 and no drug-related adverse findings in major organs, including lung, liver, and kidney. In summary, YL252 is the first reported ADC that concurrently blocks PD-L1, inhibits VEGF-driven angiogenesis, and releases a cytotoxic payload in the tumor microenvironment, representing a single-agent approach that integrates immunotherapy, anti-angiogenic therapy, and chemotherapy mechanisms.
利益披露 Disclosure
W. Lian, MediLink Therapeutics (Suzhou) Co., Ltd. Employment. X. Shi, MediLink Therapeutics (Suzhou) Co., Ltd. Employment. Q. Zong, MediLink Therapeutics (Suzhou) Co., Ltd. Employment. H. Deng, MediLink Therapeutics (Suzhou) Co., Ltd. Employment. C. Deng, MediLink Therapeutics (Suzhou) Co., Ltd. Employment. T. Wang, MediLink Therapeutics (Suzhou) Co., Ltd. Employment. F. Xu, MediLink Therapeutics (Suzhou) Co., Ltd. Employment. S. Wang, MediLink Therapeutics (Suzhou) Co., Ltd. Employment. T. Xue, MediLink Therapeutics (Suzhou) Co., Ltd. Employment. J. Cai, MediLink Therapeutics (Suzhou) Co., Ltd. Employment.

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