PO.TB08.01 · 肿瘤生物学

在HER2阳性患者来源异种移植模型中模拟对trastuzumab deruxtecan的原发性耐药及实验诱导的获得性耐药

Modeling of de novo and experimentally induced acquired resistance to trastuzumab deruxtecan in HER2-positive patient-derived xenografts

海报缩略图:在HER2阳性患者来源异种移植模型中模拟对trastuzumab deruxtecan的原发性耐药及实验诱导的获得性耐药
编号 7495 展板 13 时间 4/22 09:00–12:00 区域 Section 30 主讲 Hongyan Sun
分会场 Tumor Adhesion
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作者与单位 Authors & Affiliations

Hongyan Sun, Xiaoliu Yang, Shiying Guo, Yujing Zhang, Huixin Yang, Xiang Gao

GemPharmatech Co., Ltd., Nanjing, China

摘要 Abstract

中文摘要
Trastuzumab Deruxtecan(T-DXd)改善了HER2阳性癌症的疗效,然而内在耐药和获得性耐药带来了重大的临床障碍。耐药机制多种多样且尚未完全阐明,对于T-DXd耐药患者的最佳后续治疗方案仍未明确。为解决这一问题,我们建立了一对匹配的患者来源异种移植(PDX)模型,以再现这些关键的临床情形。通过对我们的HER2阳性PDX库进行体内疗效筛选,我们鉴定出一个独特的模型,该模型对T-DXd表现出原发性耐药,在治疗时仅显示极小的肿瘤消退。另外,我们通过对一个初始敏感的HER2阳性PDX进行反复循环的体内T-DXd给药,生成了一个获得性耐药模型。该模型再现了从初始应答到治疗失败的临床进展过程。这对配对模型为直接比较分析耐药机制提供了一个强有力的、受控的系统。这些经过充分表征的PDX模型是肿瘤学界的一项关键资源。它们能够在受控的体内环境中直接比较驱动内在耐药和治疗诱导耐药的分子机制。该平台可立即用于研究HER2生物学、载荷递送以及旁路信号通路的改变,并且非常适合评估旨在克服T-DXd耐药的新型治疗策略。
查看英文原文 English abstract
Trastuzumab Deruxtecan (T-DXd) has improved outcomes for HER2-positive cancers, yet intrinsic and acquired resistance present significant clinical hurdles. The mechanisms of resistance are diverse and incompletely understood, and optimal subsequent therapies for T-DXd-resistant patients remain undefined. To address this, we established a matched pair of patient-derived xenograft (PDX) models that recapitulate these critical clinical scenarios. Through in vivo efficacy screening of our HER2-positive PDX bank, we identified a unique model demonstrating de novo resistance to T-DXd, showing minimal tumor regression upon treatment. Separately, we generated a model of acquired resistance by subjecting an initially sensitive HER2-positive PDX to repeated cycles of T-DXd in vivo. This model recapitulated the clinical progression from initial response to treatment failure. This paired set of models provides a powerful, controlled system for a direct comparative analysis of resistance mechanisms. These well-characterized PDX models represent a critical resource for the oncology community. They enable the direct comparison of molecular mechanisms driving both intrinsic and treatment-induced resistance in a controlled, in vivo setting. This platform is immediately applicable for investigating alterations in HER2 biology, payload delivery, and bypass signaling pathways, and is ideally suited for evaluating novel therapeutic strategies aimed at overcoming T-DXd resistance.
利益披露 Disclosure
H. Sun, None.. X. Yang, None.. S. Guo, None.. Y. Zhang, None.. H. Yang, None.. X. Gao, None.

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