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New Insights into the Process of Placentation and the Role of Oxidative Uterine Microenvironment

机译:对胎盘形成过程和氧化性子宫微环境作用的新见解

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摘要

For a successful pregnancy to occur, a predecidualized receptive endometrium must be invaded by placental differentiated cells (extravillous trophoblast cells (EVTs)) and, at the same time, continue decidualization. EVT invasion is aimed at anchoring the placenta to the maternal uterus and ensuring local blood supply increase necessary to provide normal placental and foetal development. The first is achieved by migrating through the maternal endometrium and deeper into the myometrium, while the second by transforming uterine spiral arteries into large vessels. This process is a tightly regulated battle comprising interests of both the mother and the foetus. Invading EVTs are required to perform a scope of functions: move, adhere, proliferate, differentiate, interact, and digest the extracellular matrix (ECM); tolerate hypoxia; transform the maternal spiral arteries; and die by apoptosis. All these functions are modulated by their surrounding microenvironment: oxygen, soluble factors (e.g., cytokines, growth factors, and hormones), ECM proteins, and reactive oxygen species. A deeper comprehension of oxidative uterine microenvironment contribution to trophoblast function will be addressed in this review.
机译:为了成功怀孕,必须通过胎盘分化的细胞(绒毛外滋养层细胞(EVT))侵入预定的受孕子宫内膜,同时继续进行蜕膜。 EVT侵袭的目的是将胎盘锚定在孕妇子宫上,并确保增加局部血液供应,以提供正常的胎盘和胎儿发育。第一种是通过母体子宫内膜迁移并更深地进入子宫内膜,而第二种是通过将子宫螺旋动脉转变为大血管。这个过程是一场严格控制的战斗,包括母亲和胎儿的利益。入侵的EVT需要执行一系列功能:移动,粘附,增殖,分化,相互作用和消化细胞外基质(ECM);耐受缺氧;改造产妇的螺旋动脉;并因凋亡而死亡。所有这些功能均受周围微环境的调节:氧气,可溶性因子(例如细胞因子,生长因子和激素),ECM蛋白和活性氧。这篇综述将探讨对氧化性子宫微环境对滋养细胞功能的更深层次的理解。

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