PO.CH01.06 · 化学
剖析ADC肺毒性:一种用于指导和启示ADC发现的小鼠ADC相关ILD模型
Dissecting ADC pulmonary toxicity: A murine ADC-associated ILD model to guide and inform ADC discovery
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
基于拓扑异构酶I抑制剂(如德鲁替康)构建的抗体偶联药物(ADC)重塑了实体瘤的治疗格局,然而其前景仍受制于间质性肺病(ILD)——一种具有临床意义的毒性,其机制起源尚不完全清楚。在此,利用一个转化性的小鼠ILD平台,我们剖析了ADC诱导肺损伤的结构决定因素,并揭示了由药物-连接子化学驱动的肺部反应中一个显著的分歧。曲妥珠单抗-GGFG-DXd重现了临床和非人灵长类ILD所特有的迟发性肺泡炎症、巨噬细胞富集浸润和纤维化重塑,而结构上截然不同的对照物——包括一种基于SN38的ADC、新型喜树碱ADC以及带有无载荷连接子的ADC——则产生了出人意料的发现,提示ILD远不止是一种载荷来源的毒性。这些数据凸显了在发现过程中评估ILD相关毒性的重要性,而以往毒性筛选仅保留于先导优化阶段。运用我们的小鼠ILD平台,我们得以研究和评估众多新型喜树碱载荷与新型连接子的组合,在不牺牲低HER-2表达的JIMT1疗效模型中疗效的前提下,实现了ILD显著减少或无ILD。这些发现建立了一个可预测且可扩展的ADC相关ILD小鼠平台,并提出了对ADC安全性工程的一种概念性重构,即ILD相关毒性评估可指导理性的ADC设计。
查看英文原文 English abstract
Antibody drug conjugates (ADCs) built upon topoisomerase I inhibitors such as deruxtecan have reshaped the therapeutic landscape of solid tumors, yet their promise continues to be constrained by interstitial lung disease (ILD), a clinically significant toxicity whose mechanistic origin remains incompletely understood. Herein, using a translational murine ILD platform, we dissect the architectural determinants of ADC-induced lung injury and reveal a striking divergence in pulmonary responses driven by drug-linker chemistry. Trastuzumab-GGFG-DXd reproduced the delayed-onset alveolar inflammation, macrophage-rich infiltrates, and fibrotic remodeling characteristic of clinical and non-human primate ILD, whereas structurally distinct comparators including an SN38-based ADC, novel camptothecin ADCs, and ADCs featuring payload-free linkers result in unexpected findings that suggest ILD is much more than a payload-derived toxicity. This data highlights the importance of evaluating ILD-related toxicity in the discovery process whereas previously toxicity screening is reserved for lead optimization stages. Employing our murine ILD platform, we were able to study and evaluate numerous combinations of novel camptothecin payloads and novel linkers arriving at significantly reduced or no ILD without compromising the efficacy in low HER-2 expressing JIMT1 efficacy model. These findings establish a predictive and scalable murine platform for ADC-associated ILD and propose a conceptual reframing of ADC safety engineering, one in which ILD related toxicity evaluation can guide rational ADC design.
利益披露 Disclosure
S. Anaganti, None..
A. Bhujade, None..
S. Murkli, None..
Z. Sparta, None..
N. Panth, None..
A. Weig, None..
R. Vartak, None..
J. Dugal-Tessier, None.