Aplin John D, Ruane Peter T
Maternal and Fetal Health Research Group, Manchester Academic Health Sciences Centre, St Mary's Hospital, University of Manchester, Manchester M13 9WL, UK
Maternal and Fetal Health Research Group, Manchester Academic Health Sciences Centre, St Mary's Hospital, University of Manchester, Manchester M13 9WL, UK.
J Cell Sci. 2017 Jan 1;130(1):15-22. doi: 10.1242/jcs.175943.
At implantation, with the acquisition of a receptive phenotype in the uterine epithelium, an initial tenuous attachment of embryonic trophectoderm initiates reorganisation of epithelial polarity to enable stable embryo attachment and the differentiation of invasive trophoblasts. In this Cell Science at a Glance article, we describe cellular and molecular events during the epithelial phase of implantation in rodent, drawing on morphological studies both in vivo and in vitro, and genetic models. Evidence is emerging for a repertoire of transcription factors downstream of the master steroidal regulators estrogen and progesterone that coordinate alterations in epithelial polarity, delivery of signals to the stroma and epithelial cell death or displacement. We discuss what is known of the cell interactions that occur during implantation, before considering specific adhesion molecules. We compare the rodent data with our much more limited knowledge of the human system, where direct mechanistic evidence is hard to obtain. In the accompanying poster, we represent the embryo-epithelium interactions in humans and laboratory rodents, highlighting similarities and differences, as well as depict some of the key cell biological events that enable interstitial implantation to occur.
在着床时,随着子宫上皮获得接受态表型,胚胎滋养外胚层最初的微弱附着启动上皮极性的重新组织,以实现胚胎的稳定附着和侵袭性滋养层细胞的分化。在这篇“一目了然的细胞科学”文章中,我们利用体内和体外的形态学研究以及遗传模型,描述啮齿动物着床上皮阶段的细胞和分子事件。越来越多的证据表明,主要甾体调节因子雌激素和孕酮下游的一系列转录因子协调上皮极性的改变、向基质传递信号以及上皮细胞死亡或移位。在考虑特定的黏附分子之前,我们先讨论一下着床过程中发生的细胞相互作用。我们将啮齿动物的数据与我们对人类系统了解较少的情况进行比较,在人类系统中很难获得直接的机制证据。在随附的海报中,我们展示了人类和实验啮齿动物中胚胎与上皮的相互作用,突出了异同点,同时描绘了一些使间质着床能够发生的关键细胞生物学事件。