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Pre-existing Functional Heterogeneity of Tumorigenic Compartment as the Origin of Chemoresistance in Pancreatic Tumors

机译:已有的功能性异质性作为胰腺肿瘤化学耐药性的起源。

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摘要

Adaptive drug-resistance mechanisms allow human tumors to evade treatment through selection and expansion of treatment-resistant clones. Here, studying clonal evolution of tumor cells derived from human pancreatic tumors, we demonstrate that in vitro cultures and in vivo tumors are maintained by a common set of tumorigenic cells that can be used to establish clonal replica tumors (CRTs), large cohorts of animals bearing human tumors with identical clonal composition. Using CRTs to conduct quantitative assessments of adaptive responses to therapeutics, we uncovered a multitude of functionally heterogeneous subpopulations of cells with differential degrees of drug sensitivity. High-throughput isolation and deep characterization of unique clonal lineages showed genetic and transcriptomic diversity underlying functionally diverse subpopulations. Molecular annotation of gemcitabine-naive clonal lineages with distinct responses to treatment in the context of CRTs generated signatures that can predict the response to chemotherapy, representing a potential biomarker to stratify patients with pancreatic cancer.
机译:适应性耐药机制允许人类肿瘤通过选择和扩展治疗耐药性克隆来逃避治疗。在这里,研究源自人类胰腺肿瘤的肿瘤细胞的克隆进化,我们证明了体外培养和体内肿瘤是由一组常见的致瘤细胞维持的,这些细胞可用于建立克隆复制瘤(CRT),大型动物群具有相同克隆组成的人类肿瘤。使用CRT对治疗药物的适应性反应进行定量评估,我们发现了许多功能异质性细胞亚群,其药物敏感性程度不同。高通量分离和独特的克隆谱系的深层表征显示了功能多样的亚群背后的遗传和转录组多样性。在CRT的背景下,具有天然吉西他滨的克隆谱系对治疗的独特反应的分子注释产生了可以预测对化学疗法的反应的特征,这代表了对胰腺癌患者进行分层的潜在生物标记。

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