PO.TB04.06 · 肿瘤生物学

对olaparib获得性耐药的乳腺癌PDX模型:揭示PARP抑制剂逃逸机制的临床前平台

Breast cancer PDX models with acquired resistance to olaparib: A preclinical platform to uncover mechanisms of PARP inhibitor escape

编号 2164 展板 15 时间 4/20 09:00–12:00 区域 Section 29 主讲 Olivier DEAS, PhD
分会场 In Vivo Models 1: Mouse, Zebrafish, and Alternative Species
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作者与单位 Authors & Affiliations

Emilie INDERSIE, Benjamin GUERRIN, Eugenie DELHORBE, Eva CYPRIEN, Elena DARBINEAN, Delphine NICOLLE, Marie TAVERNIER, Olivier DÉAS

XenTech, Evry-Courcouronnes, France

摘要 Abstract

中文摘要
PARP抑制剂(PARPi),如olaparib,显著改善了携带BRCA1/2突变或存在同源重组缺陷(HRD)的乳腺癌患者的预后。然而,获得性耐药的出现仍是一个主要的临床障碍。因此,稳健的临床前模型对于阐明耐药机制和评估新型治疗策略至关重要。在我们由55个患者来源乳腺癌异种移植(PDX)组成的队列中,51个在体内接受了olaparib暴露,其中19个表现出敏感性。随后,若干HRD模型接受了olaparib的长期治疗,直至肿瘤复发,表明产生了获得性耐药。使用组织病理学、转录组学(RNA-seq)和基因组学(全外显子测序)分析对耐药肿瘤及其亲本敏感对照进行了全面比较。迄今为止,我们已通过持续的体内暴露从6个初始敏感的PDX模型建立了包含9个olaparib耐药衍生模型的组合。这些耐药模型表现出异质性的耐药机制,包括BRCA1突变回复、同源重组的部分恢复以及DNA修复通路的过表达。总体而言,这一组olaparib耐药PDX乳腺癌模型是研究PARPi耐药机制和指导HRD乳腺癌二线联合疗法开发的宝贵临床前资源。
查看英文原文 English abstract
PARP inhibitors (PARPi), such as olaparib, have significantly improved the prognosis of breast cancer patients harboring BRCA1/2 mutations or with homologous recombination deficiency (HRD). However, the emergence of acquired resistance remains a major clinical obstacle. Robust preclinical models are therefore essential to elucidate the mechanisms of resistance and evaluate new therapeutic strategies. Within our cohort of 55 patient-derived breast cancer (PDX) xenografts, 51 were exposed in vivo to olaparib, of which 19 showed sensitivity. Several HRD models were then chronically treated with olaparib until tumor recurrence, indicating acquired resistance. Resistant tumors and their parental sensitive counterparts were comprehensively compared using histopathological, transcriptomic (RNA-seq), and genomic (whole-exome sequencing) analyses. To date, we have established a panel of nine olaparib-resistant derivatives from six initially sensitive PDX models through continuous in vivo exposure. These resistant models exhibit heterogeneous resistance mechanisms, including BRCA1 mutation reversion, partial restoration of homologous recombination, and overexpression of DNA repair pathways. Overall, this panel of olaparib-resistant PDX breast cancer models represents a valuable preclinical resource to investigate PARPi resistance mechanisms and to guide the development of second-line combination therapies for HRD breast cancer.
利益披露 Disclosure
E. Indersie, None.. B. Guerrin, None.. E. Delhorbe, None.. E. Cyprien, None.. E. Darbinean, None.. D. Nicolle, None.. M. Tavernier, None.. O. Déas, None.

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