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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Involvement of gap junctions in placental functions and development
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Involvement of gap junctions in placental functions and development

机译:间隙连接参与胎盘功能和发育

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摘要

Connexin (Cx) expression and gap junctional intercellular communication (GJIC) are involved in development and differentiation processes. Mediating exchanges between mother and fetus, the placenta is formed when fetal membranes are apposed or even fusing or destroying the uterine mucosa. Therefore, an extraordinary variability of placental structures is observed throughout the mammalian species. This variability affect mainly, the maternofetal blood flow interrelationships, the kind and number of tissue layers separating maternal and fetal bloods, the trophoblast invasiveness and the formation of a syncytium (syncytiotrophoblast). Here, the expression, the localisation and the possible role of Cx and GJIC in placental functions and development are discussed. In rodents, gene knock out in mice have vastly improved our understanding of the role of Cx genes in mouse placental development: Cx26 in transplacental uptake of glucose, Cx31 in the proliferative process of trophoblastic cells and Cx45 in placental vascularisation. In human, it appears that Cx43 allows a GJIC required for the fusion process of cytotrophoblastic cells leading to the formation of the syncytiotrophoblast, the site of the numerous placental functions. On other hands, Cx40 plays a critical role in the switch from a proliferative to an invasive phenotype of the trophoblastic cells invading the endometrium. Owing to the striking diversity of Cx expression in placental structures, we must be careful when extrapolating findings from one species to another. (C) 2005 Elsevier B.V. All rights reserved.
机译:连接蛋白(Cx)表达和间隙连接细胞间通讯(GJIC)参与发展和分化过程。在胎膜并置或什至融合或破坏子宫粘膜时形成胎盘,介导母胎之间的交换。因此,在整个哺乳动物物种中观察到胎盘结构的巨大变化。这种变异性主要影响胎儿间的血流相互关系,分离母血和胎儿血的组织层的种类和数量,滋养层的侵袭性和合胞体(合体滋养层)的形成。在此,讨论了Cx和GJIC在胎盘功能和发育中的表达,定位及其可能的作用。在啮齿动物中,基因敲除小鼠大大提高了我们对Cx基因在小鼠胎盘发育中作用的理解:Cx26在胎盘摄取葡萄糖,Cx31在滋养细胞增殖过程中以及Cx45在胎盘血管形成中。在人类中,似乎Cx43允许细胞滋养层细胞融合过程所需的GJIC,导致融合体滋养层细胞的形成,胎盘滋养层是许多胎盘功能的部位。另一方面,Cx40在侵袭子宫内膜的滋养层细胞从增生性表型转变为侵入性表型中起着关键作用。由于胎盘结构中Cx表达的惊人差异,在将发现从一个物种推算到另一个物种时,我们必须小心。 (C)2005 Elsevier B.V.保留所有权利。

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