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Enteric Bacteria and Cancer Stem Cells

机译:肠细菌和癌症干细胞

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摘要

Intestinal bacteria can contribute to cell proliferation and cancer development, particularly in chronic infectious diseases in which bacteria and/or bacterial components might interfere with cell function. The number of microbial cells within the gut lumen is estimated to be 100 trillion, which is about 10-times larger than the number of eukaryotic cells in the human body. Because of the complexity of the gut flora, identifying the specific microbial agents related to human diseases remains challenging. Recent studies have demonstrated that the stemness of colon cancer cells is, in part, orchestrated by the microenvironment and is defined by high Wnt activity. In this review article, we will discuss recent progress with respect to intestinal stem cells, cancer stem cells, and the molecular mechanisms of enteric bacteria in the activation of the Wnt pathway. We will also discuss the roles of other pathways, including JAK-STAT, JNK, and Notch, in regulating stem cell niches during bacterial infections using Drosophila models. Insights gained from understanding how host-bacterial interaction during inflammation and cancer may serve as a paradigm for understanding the nature of self-renewal signals.
机译:肠道细菌可以促进细胞增殖和癌症发展,特别是在细菌和/或细菌成分可能会干扰细胞功能的慢性传染病中。肠道内腔中的微生物细胞数量估计为100万亿,这是人体中真核细胞数量的约10倍。由于肠道菌群的复杂性,鉴定与人类疾病相关的特定微生物制剂仍然具有挑战性。最近的研究表明,结肠癌细胞的干性部分地由微环境所控制,并由高Wnt活性来定义。在这篇综述文章中,我们将讨论肠道干细胞,癌症干细胞以及肠细菌在Wnt途径激活中的分子机制方面的最新进展。我们还将讨论使用果蝇模型在细菌感染过程中调节干细胞生态位的其他途径(包括JAK-STAT,JNK和Notch)的作用。通过了解炎症和癌症期间宿主与细菌之间的相互作用如何成为理解自我更新信号的本质的范例而获得的见解。

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