Haider S, Pollheimer J, Knöfler M
Department of Obstetrics and Gynaecology, Reproductive Biology Unit, Medical University of Vienna, Vienna, Austria.
Department of Obstetrics and Gynaecology, Reproductive Biology Unit, Medical University of Vienna, Vienna, Austria.
Placenta. 2017 Aug;56:65-72. doi: 10.1016/j.placenta.2017.01.117. Epub 2017 Jan 16.
Activation of Notch signalling upon cell-cell contact of neighbouring cells controls a plethora of cellular processes such as stem cell maintenance, cell lineage determination, cell proliferation, and survival. Accumulating evidence suggests that the pathway also critically regulates these events during placental development and differentiation. Herein, we summarize our present knowledge about Notch signalling in murine and human placentation and discuss its potential role in the pathophysiology of gestational disorders. Studies in mice suggest that Notch controls trophectoderm formation, decidualization, placental branching morphogenesis and endovascular trophoblast invasion. In humans, the particular signalling cascade promotes formation of the extravillous trophoblast lineage and regulates trophoblast proliferation, survival and differentiation. Expression patterns as well as functional analyses indicate distinct roles of Notch receptors in different trophoblast subtypes. Altered effects of Notch signalling have been detected in choriocarcinoma cells, consistent with its role in cancer development and progression. Moreover, deregulation of Notch signalling components were observed in pregnancy disorders such as preeclampsia and fetal growth restriction. In summary, Notch plays fundamental roles in different developmental processes of the placenta. Abnormal signalling through this pathway could contribute to the pathogenesis of gestational diseases with aberrant placentation and trophoblast function.
相邻细胞间的细胞-细胞接触时Notch信号通路的激活控制着众多细胞过程,如干细胞维持、细胞谱系决定、细胞增殖和存活。越来越多的证据表明,该信号通路在胎盘发育和分化过程中也对这些事件起着关键调节作用。在此,我们总结了目前关于Notch信号通路在小鼠和人类胎盘形成中的知识,并讨论其在妊娠疾病病理生理学中的潜在作用。小鼠研究表明,Notch控制滋养外胚层形成、蜕膜化、胎盘分支形态发生和血管内滋养层细胞侵袭。在人类中,特定的信号级联促进绒毛外滋养层细胞谱系的形成,并调节滋养层细胞的增殖、存活和分化。表达模式以及功能分析表明Notch受体在不同滋养层细胞亚型中具有不同作用。在绒毛膜癌细胞中检测到Notch信号通路的改变效应,这与其在癌症发生和发展中的作用一致。此外,在子痫前期和胎儿生长受限等妊娠疾病中观察到Notch信号通路成分的失调。总之,Notch在胎盘的不同发育过程中起着重要作用。通过该信号通路的异常信号传导可能导致胎盘形成和滋养层细胞功能异常的妊娠疾病的发病机制。