PO.ET01.02 · 实验与分子治疗

靶向TROP2的ADC药物Dato-DXd和sac-TMT在大规模癌症细胞系panel中的不同应答特征

Distinct response profiles of TROP2-targeting ADCs Dato-DXd and sac-TMT across a large panel of cancer cell lines

海报缩略图:靶向TROP2的ADC药物Dato-DXd和sac-TMT在大规模癌症细胞系panel中的不同应答特征
编号 354 展板 13 时间 4/19 02:00–05:00 区域 Section 15 主讲 Jeffrey Kooijman, MSc
分会场 Mechanism-Guided Development of Targeted Cancer Therapies
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作者与单位 Authors & Affiliations

Janneke J. T. M. Melis, Eef F. P. Smits, Karsten P. F. van Doorn, Tsang W. Lam, Jeroen A. D. M. de Roos, Daphne J. F. Kluitmans, Jeffrey J. Kooijman, Guido J. R. Zaman, Jorg C. J. Benningshof

Oncolines B.V., Oss, Netherlands

摘要 Abstract

中文摘要
抗体-药物偶联物(ADC)是一类靶向抗癌疗法,通过与癌细胞上过表达的受体结合,将细胞毒性药物直接递送至肿瘤。受体结合后,受体结合的ADC被内化,药物被释放,触发细胞死亡。 滋养层细胞表面抗原2(TROP2)是一种在上皮性肿瘤中高表达的细胞表面受体,使其成为一个有吸引力的ADC靶点。Sacituzumab govitecan于2020年获FDA批准用于三阴性乳腺癌(TNBC)。然而,其血浆半衰期短促使人们开发更稳定的替代药物。此后,两种较新的ADC——sacituzumab tirumotecan(sac-TMT)和datopotamab deruxtecan(Dato-DXd)已获批临床使用。两者均携带拓扑异构酶1抑制剂载荷,但在抗体和连接子设计上有所不同。Sac-TMT在中国获批用于TNBC,并获得FDA针对EGFR突变非小细胞肺癌(NSCLC)的突破性疗法认定。Dato-DXd于2025年获FDA批准用于HR+/HER2-乳腺癌和EGFR突变NSCLC。尽管观察到TROP2表达与药物敏感性之间存在相关性,这些ADC的获批与肿瘤TROP2水平无关。这提示单凭TROP2表达可能无法预测治疗获益,替代生物标志物或许能更好地解释临床疗效。 为进一步探究这一点,我们在约270个癌症细胞系panel上对Dato-DXd和sac-TMT进行了分析,这些细胞系代表了多种肿瘤类型,包括八个TNBC、三个HR+/HER2-以及六个EGFR突变NSCLC模型。TROP2(TACSTD2)基因广泛表达,在整个panel中基础表达水平相差超过2500倍。通过流式细胞术在一部分细胞系中定量了细胞表面TROP2表达水平。将细胞暴露于每种ADC的9点剂量范围,并通过细胞内ATP测定评估细胞活力。得出半数最大抑制浓度(IC50),并与基因组、转录组和蛋白质组数据集整合,以鉴定药物应答的分子预测因子。 Dato-DXd表现出比sac-TMT更具选择性的抑制特征。当将两种ADC的IC50“指纹”与248种抗癌药物的参考数据集进行比较时,Dato-DXd与EGFR抑制剂聚为一类,而sac-TMT与拓扑异构酶I抑制剂显示出最高的相似性,表明两者具有机制上不同的选择性模式。此外,药物敏感性与TROP2基因表达之间的相关性在Dato-DXd中比在sac-TMT中更强。 这项大规模细胞panel分析研究强调了整合生物信息学分析在揭示ADC应答生物标志物方面的力量,并鉴定出适合研究作用机制(如受体内化、载荷加工和旁观者效应)的细胞模型。
查看英文原文 English abstract
Antibody-drug conjugates (ADCs) are targeted cancer therapies that deliver cytotoxic drugs directly to tumors by binding to receptors overexpressed on cancer cells. Following receptor binding, the receptor-bound ADC is internalized and the drug is released, triggering cell death. Trophoblast cell surface antigen 2 (TROP2) is a cell surface receptor highly expressed in epithelial tumors, making it an attractive ADC target. Sacituzumab govitecan gained FDA approval in 2020 for triple-negative breast cancer (TNBC). However, its short plasma half-life motivated the development of more stable alternatives. Two newer ADCs, sacituzumab tirumotecan (sac-TMT) and datopotamab deruxtecan (Dato-DXd), have since been approved for clinical use. Both carry a topoisomerase-1 inhibitor payload but differ in antibody and linker design. Sac-TMT is approved for TNBC in China and has received FDA breakthrough designation for EGFR -mutated non-small cell lung cancer (NSCLC). Dato-DXd received FDA approval in 2025 for HR + /HER2 - breast cancer and EGFR -mutated NSCLC. Despite observed correlations between TROP2 expression and drug sensitivity, these ADCs are approved regardless of tumor TROP2 levels. This suggests that TROP2 expression alone may not predict therapeutic benefit, and alternative biomarkers may better explain clinical efficacy. To explore this further, Dato-DXd and sac-TMT were profiled on a panel of approximately 270 cancer cell lines, representing diverse tumor types, including eight TNBC, three HR + /HER2 - , and six EGFR-mutated NSCLC models. The TROP2 ( TACSTD2 ) gene was widely expressed with over 2500-fold difference in basal expression levels across the panel. Surface TROP2 expression levels were quantified by flow cytometry in a subset of cell lines. Cells were exposed to a 9-point dose range of each ADC, and viability was assessed by intracellular ATP measurement. Half-maximum inhibitory concentrations (IC 50 ) were derived and integrated with genomic, transcriptomic and proteomic datasets to identify molecular predictors of drug response. Dato-DXd exhibited a more selective inhibition profile than sac-TMT. When the IC 50 “fingerprints” of the two ADCs were compared to a reference dataset of 248 anticancer agents, Dato-DXd clustered with EGFR inhibitors, whereas sac-TMT showed highest similarity to topoisomerase I inhibitors, indicating mechanistically distinct selectivity patterns. Moreover, correlation between drug sensitivity and TROP2 gene expression was stronger for Dato-DXd than for sac-TMT. This large-scale cell panel profiling study underscores the power of integrative bioinformatic analyses to uncover biomarkers of ADC response, and identifies cell models suitable for investigating mechanisms of action, such as receptor internalization, payload processing, and bystander effects.
利益披露 Disclosure
J. J. T. Melis, None.. E. F. P. Smits, None.. K. P. F. van Doorn, None.. T. W. Lam, None.. J. A. D. de Roos, None.. D. J. F. Kluitmans, None. J. J. Kooijman, Oncolines B.V Employment. G. J. R. Zaman, None.. J. C. J. Benningshof, None.

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