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人类子宫内膜蜕膜化:机制、功能及临床展望

Decidualization of the human endometrium: mechanisms, functions, and clinical perspectives.

作者信息

Gellersen Birgit, Brosens Ivo A, Brosens Jan J

机构信息

Endokrinologikum Hamburg, Hamburg, Germany.

出版信息

Semin Reprod Med. 2007 Nov;25(6):445-53. doi: 10.1055/s-2007-991042.

Abstract

The fetomaternal interface, consisting of the maternal decidua and the invading fetal trophoblast, critically regulates placental function and the growth and development of the conceptus. In its broadest sense, decidualization could be viewed as the postovulatory process of endometrial remodeling in preparation for pregnancy, which includes secretory transformation of the uterine glands, influx of specialized uterine natural killer cells, and vascular remodeling. A more restricted definition of the decidual process denotes the morphological and biochemical reprogramming of the endometrial stromal compartment. This differentiation process is dependent entirely on the convergence of the cyclic adenosine monophosphate and progesterone signaling pathways that drives integrated changes at both the transcriptome and the proteome level. As a consequence, decidualizing stromal cells acquire the unique ability to regulate trophoblast invasion, to resist inflammatory and oxidative insults, and to dampen local maternal immune responses. In humans, decidualization of the stromal compartment occurs in the mid-luteal phase of the menstrual cycle, independently of pregnancy. This raises the possibility that biochemical analysis of timed endometrial biopsy samples taken in a nonconception cycle could be informative of subsequent pregnancy outcome.

摘要

母胎界面由母体蜕膜和侵入的胎儿滋养层组成,对胎盘功能以及胚胎的生长发育起着关键的调节作用。从最广泛的意义上讲,蜕膜化可被视为排卵后子宫内膜重塑以准备妊娠的过程,这包括子宫腺的分泌转化、特殊子宫自然杀伤细胞的流入以及血管重塑。对蜕膜化过程更狭义的定义是指子宫内膜基质区室的形态和生化重编程。这个分化过程完全依赖于环磷酸腺苷和孕酮信号通路的汇聚,该通路驱动转录组和蛋白质组水平的综合变化。因此,蜕膜化的基质细胞获得了调节滋养层侵袭、抵抗炎症和氧化损伤以及抑制局部母体免疫反应的独特能力。在人类中,基质区室的蜕膜化发生在月经周期的黄体中期,与妊娠无关。这增加了一种可能性,即在非受孕周期采集的定时子宫内膜活检样本的生化分析可能有助于了解随后的妊娠结局。

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