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膀胱癌患者来源异种移植在体内和类器官培养中表现出侵袭性生长动力学。

A bladder cancer patient-derived xenograft displays aggressive growth dynamics in vivo and in organoid culture.

机构信息

Division of Human Biology, Fred Hutchinson Cancer Research Center, Seattle, WA, USA.

Department of Urology, University of Washington School of Medicine, Seattle, WA, USA.

出版信息

Sci Rep. 2021 Feb 25;11(1):4609. doi: 10.1038/s41598-021-83662-7.

Abstract

Bladder cancer is among the most prevalent cancers worldwide. Currently, few bladder cancer models have undergone thorough characterization to assess their fidelity to patient tumors, especially upon propagation in the laboratory. Here, we establish and molecularly characterize CoCaB 1, an aggressive cisplatin-resistant muscle-invasive bladder cancer patient-derived xenograft (PDX) and companion organoid system. CoCaB 1 was a subcutaneous PDX model reliably transplanted in vivo and demonstrated an acceleration in growth upon serial transplantation, which was reflected in organoid and 2D cell culture systems. Transcriptome analysis revealed progression towards an increasingly proliferative and stem-like expression profile. Gene expression differences between organoid and PDX models reflected expected differences in cellular composition, with organoids enriched in lipid biosynthesis and metabolism genes and deprived of extracellular components observed in PDXs. Both PDX and organoid models maintained the histological fidelity and mutational heterogeneity of their parental tumor. This study establishes the CoCaB 1 PDX and organoid system as companion representative tumor models for the development of novel bladder cancer therapies.

摘要

膀胱癌是全球最常见的癌症之一。目前,很少有膀胱癌模型经过彻底的特征描述来评估其对患者肿瘤的忠实程度,尤其是在实验室中进行繁殖时。在这里,我们建立并分子表征了 CoCaB1,这是一种侵袭性顺铂耐药的肌层膀胱癌患者来源的异种移植(PDX)和配套类器官系统。CoCaB1 是一种可靠的皮下 PDX 模型,可在体内进行可靠移植,并在连续移植时表现出生长加速,这在类器官和 2D 细胞培养系统中得到了反映。转录组分析显示出向增殖和干细胞样表达谱的进展。类器官和 PDX 模型之间的基因表达差异反映了细胞组成的预期差异,类器官富含脂质生物合成和代谢基因,而 PDX 中观察到缺乏细胞外成分。PDX 和类器官模型都保持了其亲本肿瘤的组织学保真度和突变异质性。这项研究建立了 CoCaB1 PDX 和类器官系统作为新型膀胱癌治疗方法开发的配套代表性肿瘤模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d2b/7907272/5397148bbad8/41598_2021_83662_Fig1_HTML.jpg

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