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Modeling lung cancer evolution and preclinical response by orthotopic mouse allografts

机译:通过原位小鼠同种异体移植建模肺癌的演变和临床前反应

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Cancer evolution is a process that is still poorly understood because of the lack of versatile in vivo longitudinal studies. By generating murine non-small cell lung cancer (NSCLC) orthoallobanks and paired primary cell lines, we provide a detailed description of an in vivo, time-dependent cancer malignization process. We identify the acquisition of metastatic dissemination potential, the selection of co-driver mutations, and the appearance of naturally occurring intratumor heterogeneity, thus recapitulating the stochastic nature of human cancer development. This approach combines the robustness of genetically engineered cancer models with the flexibility of allograft methodology. We have applied this tool for the preclinical evaluation of therapeutic approaches. This system can be implemented to improve the design of future treatments for patients with NSCLC.
机译:由于缺乏通用的体内纵向研究,癌症的发展仍是一个知之甚少的过程。通过生成鼠类非小细胞肺癌(NSCLC)的口腔细胞和成对的原代细胞系,我们提供了体内,时间依赖性癌症恶性化过程的详细描述。我们确定转移性传播潜能的获取,辅助驱动程序突变的选择和自然发生的肿瘤内异质性的外观,从而概括了人类癌症发展的随机性。这种方法结合了基因工程癌症模型的强大功能和同种异体移植方法的灵活性。我们已经将该工具用于治疗方法的临床前评估。可以实施该系统来改善NSCLC患者未来治疗的设计。

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