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Application of Cancer Cell Reprogramming Technology to Human Cancer Research

机译:癌细胞重编程技术在人癌研究中的应用

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The cancer stem cell (CSC) hypothesis is an evolving concept of oncogenesis that has recently gained wide acceptance. By definition, CSCs exhibit continuous proliferation and self-renewal, and they have been proposed to play significant roles in oncogenesis, tumor growth, metastasis, chemoresistance, and cancer recurrence. The reprogramming of cancer cells using induced pluripotent stem cell (iPSC) technology is a potential strategy for the identification of CSC-related oncogenes and tumor-suppressor genes. This technology has some advantages for studying the interactions between CSC-related genes and the cancer microenvironment. This approach may also provide a useful platform for studying the mechanisms of CSCs underlying cancer initiation and progression. The present review summarizes the recent advances in cancer cell reprogramming using iPSC technology and discusses its potential clinical use and related drug screening.
机译:癌症干细胞(CSC)假设是最近获得广泛验收的肿瘤发生的不断发展的概念。 通过定义,CSCs表现出连续增殖和自我更新,并且已经提出了在血管生成,肿瘤生长,转移,化学性和癌症复发中发挥重大作用。 使用诱导多能干细胞(IPSC)技术的癌细胞重编程是鉴定CSC相关的癌变和肿瘤抑制基因的潜在策略。 该技术对研究CSC相关基因与癌细胞微环境之间的相互作用具有一些优点。 这种方法还可以提供一种有用的平台,用于研究CSCS癌症启动和进展的CSCs机制。 本综述总结了使用IPSC技术重新编程的最近癌细胞重新编程的进展,并讨论其潜在的临床用途和相关药物筛查。

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