Drosophila models of metastasis

M. Murray
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引用次数: 6

Abstract

Abstract An important goal in the fight against cancer is to understand how tumors become invasive and metastatic. A crucial early step in metastasis is thought to be the epithelial mesenchymal transition (EMT), the process in which epithelial cells transition into a more migratory and invasive, mesenchymal state. Since the genetic regulatory networks driving EMT in tumors derive from those used in development, analysis of EMTs in genetic model organisms such as the vinegar fly, Drosophila melanogaster, can provide great insight into cancer. In this review I highlight the many ways in which studies in the fly are shedding light on cancer metastasis. The review covers both normal developmental events in which epithelial cells become migratory, as well as induced events, whereby normal epithelial cells become metastatic due to genetic manipulations. The ability to make such precise genetic perturbations in the context of a normal, in vivo environment, complete with a working innate immune system, is making the fly increasingly important in understanding metastasis.
果蝇转移模型
在与癌症的斗争中,一个重要的目标是了解肿瘤是如何变成侵袭性和转移性的。转移的一个关键早期步骤被认为是上皮间充质转化(EMT),上皮细胞转变为更具迁移性和侵袭性的间充质状态的过程。由于肿瘤中驱动EMT的基因调控网络源自于发育过程中使用的基因调控网络,因此对遗传模式生物(如醋蝇、黑腹果蝇)中的EMT进行分析,可以为癌症研究提供很好的见解。在这篇综述中,我强调了许多方法,其中苍蝇的研究揭示了癌症转移。这篇综述涵盖了正常的发育事件,其中上皮细胞迁移,以及诱导事件,其中正常上皮细胞由于基因操作而转移。在正常的体内环境中,在先天免疫系统正常工作的情况下,苍蝇能够制造如此精确的遗传扰动,这使得苍蝇在理解转移方面变得越来越重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
AIMS Genetics
AIMS Genetics GENETICS & HEREDITY-
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