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子宫内膜细胞信号转导的地下铁道:注意(缝隙)。

Inside the Endometrial Cell Signaling Subway: Mind the Gap(s).

机构信息

Reproductive Sciences Laboratory, Division of Genetics and Cell Biology, IRCCS San Raffaele Scientific Institute, 20132 Milan, Italy.

出版信息

Int J Mol Sci. 2018 Aug 21;19(9):2477. doi: 10.3390/ijms19092477.

Abstract

Endometrial cells perceive and respond to their microenvironment forming the basis of endometrial homeostasis. Errors in endometrial cell signaling are responsible for a wide spectrum of endometrial pathologies ranging from infertility to cancer. Intensive research over the years has been decoding the sophisticated molecular means by which endometrial cells communicate to each other and with the embryo. The objective of this review is to provide the scientific community with the first overview of key endometrial cell signaling pathways operating throughout the menstrual cycle. On this basis, a comprehensive and critical assessment of the literature was performed to provide the tools for the authorship of this narrative review summarizing the pivotal components and signaling cascades operating during seven endometrial cell fate "routes": proliferation, decidualization, implantation, migration, breakdown, regeneration, and angiogenesis. Albeit schematically presented as separate transit routes in a subway network and narrated in a distinct fashion, the majority of the time these routes overlap or occur simultaneously within endometrial cells. This review facilitates identification of novel trajectories of research in endometrial cellular communication and signaling. The meticulous study of endometrial signaling pathways potentiates both the discovery of novel therapeutic targets to tackle disease and vanguard fertility approaches.

摘要

子宫内膜细胞感知并响应其微环境,形成子宫内膜稳态的基础。子宫内膜细胞信号传递中的错误是导致广泛的子宫内膜病变的原因,从不孕到癌症。多年来的深入研究一直在解码子宫内膜细胞相互之间以及与胚胎相互交流的复杂分子手段。本综述的目的是为科学界提供有关在整个月经周期中起作用的关键子宫内膜细胞信号通路的第一概述。在此基础上,对文献进行了全面和批判性评估,为作者撰写本文提供了工具,总结了在七个子宫内膜细胞命运“途径”中起作用的关键组成部分和信号级联:增殖、蜕膜化、着床、迁移、分解、再生和血管生成。尽管在地铁网络中示意性地呈现为单独的运输途径,并以不同的方式叙述,但大多数情况下这些途径在子宫内膜细胞中重叠或同时发生。本综述有助于确定子宫内膜细胞通讯和信号传递的新研究轨迹。对子宫内膜信号通路的细致研究既可以发现解决疾病的新治疗靶点,也可以发现先锋生育方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d8b/6164241/1ee44c33aff4/ijms-19-02477-g001.jpg

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