PO.TB08.01 · 肿瘤生物学
开发增强型Enhertu耐药HER2阳性乳腺癌模型用于ADC耐药研究
Development of enhanced enhertu-resistant HER2-positive breast cancer models for ADC resistance research
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
抗体-药物偶联物(ADC)将单克隆抗体的精准性与强效的细胞毒性载荷相结合,以选择性地靶向癌细胞,代表了一种颇具前景的靶向癌症治疗策略。Enhertu(trastuzumab deruxtecan,DS-8201)是一种靶向HER2阳性癌症的ADC,已取得显著的临床疗效,并为抗HER2 ADC树立了新的标杆,然而获得性耐药仍是一项重大挑战。为阐明耐药机制并支持下一代ADC的开发,我们利用HER2阳性乳腺癌细胞系JIMT-1建立了一个逐步递进的Enhertu耐药临床前平台。首先对荷JIMT-1肿瘤的小鼠进行反复的体内Enhertu给药,随后收获残余肿瘤以衍生出耐药细胞系。该耐药细胞系在体外和体内均表现出对Enhertu的稳定耐药。在体外,耐药细胞对DXd载荷的IC50表现出右移,而流式细胞术和免疫组织化学表明该细胞系维持了HER2的表达。RNA测序和全外显子组测序揭示了ABCG2及其他转运蛋白的上调,表明这是一种以载荷为中心的耐药机制,由载荷敏感性改变和药物外排增强所驱动,而非靶点下调。为生成更严苛、更能反映长期高强度临床暴露的模型,将耐药细胞系再次移植并在高剂量Enhertu治疗下进行体内连续传代,从而产生了一种“增强型”高剂量耐药肿瘤模型。这些增强型肿瘤经IHC检测仍为HER2阳性,并表现出与耐药细胞系相似的转录改变,包括ABCG2的显著上调以及药物转运和细胞周期调控相关基因的更广泛改变。总之,这些Enhertu耐药模型提供了一个实用的系统,用于研究临床样本中可能尚未显现的耐药机制,并鉴定候选生物标志物和治疗靶点。这些细胞系还可用于对生物标志物指导的联合治疗以及旨在克服HER2阳性恶性肿瘤中Enhertu耐药的下一代ADC进行临床前测试。
查看英文原文 English abstract
Antibody-drug conjugates (ADCs) combine the precision of a monoclonal antibody with a potent cytotoxic payload to selectively target cancer cells and represent a promising strategy for targeted cancer therapy. Enhertu (trastuzumab deruxtecan, DS-8201), an ADC targeting HER2-positive cancers, has achieved remarkable clinical efficacy and set a new benchmark for anti-HER2 ADCs, yet acquired resistance remains a major challenge. To elucidate resistance mechanisms and support development of next-generation ADCs, we established a stepwise preclinical platform for Enhertu resistance using the HER2-positive breast cancer cell line JIMT-1. JIMT-1 tumor bearing mice were first subjected to repeated in vivo Enhertu dosing, and subsequent residual tumors were harvested to derive a resistant cell line. This resistant cell line exhibited stable resistance to Enhertu both in vitro and in vivo . In vitro , resistant cells showed a right-shifted IC50 to the DXd payload, while flow cytometry and immunohistochemistry demonstrated the line maintained HER2 expression. RNA sequencing and whole-exome sequencing revealed upregulation of ABCG2 and other transporters, indicating a payload-centric resistance mechanism driven by altered payload sensitivity and enhanced drug efflux rather than target downregulation. To generate a more stringent model that better reflects long-term, high-intensity clinical exposure, the resistant cell line was re-implanted and serially passaged in vivo under high-dose Enhertu treatment, yielding an “enhanced” high-dose resistant tumor model. These enhanced tumors remained HER2-positive by IHC and displayed transcriptional changes similar to the resistant cell line, including pronounced ABCG2 upregulation and broader alterations in genes related to drug transport and cell-cycle regulation. Together, these Enhertu-resistant models offer a practical system to investigate resistance mechanisms that may not yet be evident in clinical samples and to identify candidate biomarkers and therapeutic targets. These cell lines also enable preclinical testing of biomarker-guided combination therapies and next-generation ADCs designed to overcome Enhertu resistance in HER2-positive malignancies.
利益披露 Disclosure
H. Sun, None..
Y. Fang, None..
F. Zhu, None..
Y. Zhang, None..
H. Yang, None..
X. Gao, None.