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癌症建模与人类类器官技术相遇。

Cancer modeling meets human organoid technology.

机构信息

Cold Spring Harbor Laboratory, Cold Spring Harbor, NY 11724, USA.

Lustgarten Foundation Pancreatic Cancer Research Laboratory, Cold Spring Harbor, NY 11724, USA.

出版信息

Science. 2019 Jun 7;364(6444):952-955. doi: 10.1126/science.aaw6985.

Abstract

Organoids are microscopic self-organizing, three-dimensional structures that are grown from stem cells in vitro. They recapitulate many structural and functional aspects of their in vivo counterpart organs. This versatile technology has led to the development of many novel human cancer models. It is now possible to create indefinitely expanding organoids starting from tumor tissue of individuals suffering from a range of carcinomas. Alternatively, CRISPR-based gene modification allows the engineering of organoid models of cancer through the introduction of any combination of cancer gene alterations to normal organoids. When combined with immune cells and fibroblasts, tumor organoids become models for the cancer microenvironment enabling immune-oncology applications. Emerging evidence indicates that organoids can be used to accurately predict drug responses in a personalized treatment setting. Here, we review the current state and future prospects of the rapidly evolving tumor organoid field.

摘要

类器官是从体外干细胞中生长而来的微观自我组织的三维结构。它们再现了其体内对应器官的许多结构和功能方面。这项多功能技术导致了许多新型人类癌症模型的发展。现在可以从患有各种癌的个体的肿瘤组织中创建无限扩展的类器官。或者,基于 CRISPR 的基因修饰允许通过将任何组合的癌症基因突变引入正常类器官来设计癌症类器官模型。当与免疫细胞和成纤维细胞结合时,肿瘤类器官成为癌症微环境的模型,从而实现免疫肿瘤学应用。新出现的证据表明,类器官可用于在个性化治疗环境中准确预测药物反应。在这里,我们回顾了快速发展的肿瘤类器官领域的现状和未来前景。

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