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首页> 外文期刊>Nature medicine >Human primary liver cancer-derived organoid cultures for disease modeling and drug screening
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Human primary liver cancer-derived organoid cultures for disease modeling and drug screening

机译:人原发性肝癌衍生的有机体培养物用于疾病建模和药物筛选

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Human liver cancer research currently lacks in vitro models that can faithfully recapitulate the pathophysiology of the original tumor. We recently described a novel, near-physiological organoid culture system, wherein primary human healthy liver cells form long-term expanding organoids that retain liver tissue function and genetic stability. Here we extend this culture system to the propagation of primary liver cancer (PLC) organoids from three of the most common PLC subtypes: hepatocellular carcinoma (HCC), cholangiocarcinoma (CC) and combined HCC/CC (CHC) tumors. PLC-derived organoid cultures preserve the histological architecture, gene expression and genomic landscape of the original tumor, allowing for discrimination between different tumor tissues and subtypes, even after long-term expansion in culture in the same medium conditions. Xenograft studies demonstrate that the tumorogenic potential, histological features and metastatic properties of PLC-derived organoids are preserved in vivo. PLC-derived organoids are amenable for biomarker identification and drug-screening testing and led to the identification of the ERK inhibitor SCH772984 as a potential therapeutic agent for primary liver cancer. We thus demonstrate the wide-ranging biomedical utilities of PLC-derived organoid models in furthering the understanding of liver cancer biology and in developing personalized-medicine approaches for the disease.
机译:人肝癌研究目前缺乏体外模型,可以忠实地概括原有肿瘤的病理生理学。我们最近描述了一种新型,近生理有机侧培养系统,其中原代人健康肝细胞形成长期扩张有机体,其保留肝组织功能和遗传稳定性。在这里,我们将该培养系统扩展到原发性肝癌(PLC)有机体从最常见的PLC亚型中的三种:肝细胞癌(HCC),胆管癌(CC)和组合HCC / CC(CHC)肿瘤的繁殖。 PLC衍生的有机体培养物保留原始肿瘤的组织学架构,基因表达和基因组景观,甚至在相同培养基条件下在培养中的长期扩张后,甚至在不同肿瘤组织和亚型之间的歧视。异种移植的研究表明,PLC衍生的有机体的致致肿瘤潜力,组织学特征和转移性质被保存在体内。 PLC衍生的有机体适用于生物标志物鉴定和药物筛选测试,并导致ERK抑制剂SCH772984作为原发性肝癌的潜在治疗剂。因此,我们展示了PLC衍生的有机体模型的广泛生物医学实用程序,进一步了解肝癌生物学的理解以及开发疾病的个性化药物方法。

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