PO.TB04.03 · 肿瘤生物学
膀胱癌类器官作为模拟疾病生物学和评估新疗法的转化模型
Bladder cancer organoids as a translational models to model disease biology and assess new therapies
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:膀胱癌(BC)患者间的异质性仍是治疗失败的主要驱动因素,凸显了对更个体化治疗方法的需求。类器官是能够再现这种多样性的宝贵临床前模型。我们建立了一个包含20个模型的BC类器官生物样本库,并在表型、药理学和分子水平上对其进行了广泛表征。本研究旨在从规格特征和疾病代表性方面展示我们生物样本库的相关性。此外,我们以Enfortumab-vedotin(EV)作为概念验证,展示了这些模型在评估靶向治疗方面的效用。方法:从肿瘤样本中分离尿路上皮祖细胞,接种于Matrigel®中并加入培养基。通过全外显子组和转录组测序进行分子表征。通过光学显微镜确定类器官形态。为评估靶向治疗,用EV(0.3至10 µg/mL)处理类器官5天。采用CellTiter-Glo3D®检测测量细胞活力。结果:所有类器官模型均遵循严格的质量框架构建:培养扩增超过第6代,冻存,并显示100%的复苏后恢复率。该生物样本库涵盖了完整的病理谱系,从非侵袭性pTa到转移性pT4分期。它反映了尿路上皮癌的解剖多样性,模型来源于膀胱和输尿管肿瘤。组学分析揭示了BC患者中常见的关键分子改变,包括FGFR3和TP53突变。类器官形态分为实心、空心或混合型,与肿瘤分期相关,转移性模型表现出上皮-间质转化的特征。对于EV评估,我们评估了整个生物样本库中Nectin-4的表达,观察到表达水平存在异质性。有趣的是,类器官对EV的反应与Nectin-4表达并非严格相关,一些高Nectin-4表达的模型反应较低。结论:总体而言,我们的BC类器官生物样本库构成了一个高质量的、具有临床注释和全面表征的模型集合,确保了实验间的稳健性、稳定性和可重复性。它忠实地再现了BC中观察到的病理多样性和患者间异质性。这些类器官模型是评估新型靶向治疗的强大工具,而广泛生物样本库的可用性使得能够推断患者特异性反应,为个体化医疗铺平道路。
查看英文原文 English abstract
Background : Inter-patient heterogeneity in bladder cancer (BC) remains a major driver of treatment failure, highlighting the need for more personalized therapeutic approaches. Org anoids represent valuable preclinical models capturing this diversity. We established a BC organoid biobank comprising 20 models that have been extensively characterized at phenotypic, pharmacological and molecular levels. The aim of this study was to demonstrate the relevance of our biobank in terms of specifications and disease representation. In addition, we illustrated the utility of these models for evaluating targeted therapies, using Enfortumab-vedotin (EV) as a proof of concept.
Methods : Urothelial progenitors were isolated from tumor samples, seeded in Matrigel ® and culture medium was added. Molecular characterization was performed by whole exome and transcriptome sequencing. Morphology of organoids was determined by optical microscopy. To evaluate targeted-therapy, organoids were treated with EV (from 0.3 to 10 µg/mL) for 5 days. Cell viability was measured with CellTiter-Glo3D ® assay.
Results : All organoid models were developed following a strict quality framework: cultures were expanded beyond passage 6, cryopreserved, and demonstrated a 100% post-thaw recovery rate. The biobank captured the full pathological spectrum, from non-invasive pTa to metastatic pT4 stages. It reflected the anatomical diversity of urothelial carcinoma, with models derived from both bladder and ureteral tumors. Omics analyses revealed the presence of key molecular alterations commonly observed in BC patients, including FGFR3 and TP53 mutations. Organoid morphology, categorized as solid, hollow, or mixed, correlated with tumor stage and metastatic models exhibited features of epithelial-mesenchymal transition. For EV evaluation, we assessed Nectin-4 expression across the biobank and observed heterogeneous expression levels. Interestingly, organoid responses to EV were not strictly correlated with Nectin-4 expression with low response for models with high Nectin-4 expression.
Conclusion : Overall, our BC organoid biobank constitutes a high-quality collection of clinically annotated and comprehensively characterizes models ensuring robustness, stability, and reproducibility across experiments. It faithfully captured the pathological diversity and inter-patient heterogeneity observed in BC. These organoid models represent powerful tools for assessing novel targeted therapies, and the availability of a broad biobank enables the extrapolation of patient-specific responses, paving the way toward personalized medicine.
利益披露 Disclosure
E. Decaup, None..
C. Rouget, None..
A. Prioux-Quartier, None..
C. Béraud, None..
N. Bidan, None..
X. Gamé, None..
P. Lluel, None.