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人羊膜和绒毛膜板中的 syndecan 表达。

Syndecan expressions in the human amnion and chorionic plate.

机构信息

Department of Molecular Pathology and Innovative Therapies, Anatomy and Cell Biology, Faculty of Medicine, Marche Polytechnic University, Ancona, Italy.

出版信息

Eur J Histochem. 2010 Oct 27;54(4):e42. doi: 10.4081/ejh.2010.e42.

Abstract

The syndecan family consists of four distinct membrane glycoproteins in mammals. Syndecans control cell proliferation, differentiation, adhesion and migration through participation in cell-cell interactions, anchorage of cells to the extracellular environment, and modulation of multiple growth factors. Therefore, syndecans may play a pivotal role in the regulation of cell behaviour depending on the cellular microenvironment. Here, we demonstrate that syndecan-1, syndecan-2 and syndecan-4 are expressed in fetal membrane tissue with different immunolocalizations. Syndecan-1 is expressed in the amniotic epithelium, localizing at basolateral cell surfaces. Syndecan-2 and syndecan-4, in contrast, are mostly localized in intracellular compartments, in the extravillous cytotrophoblastic cells and in some fibroblasts of the chorionic plate as well as in the amniotic epithelial cells. In the latter, syndecan-4 is mainly localized in the apical part of the cells. Our results strongly suggest a key role of syndecan-1, syndecan-2 and syndecan-4 in the determination of structural and functional characteristics of human amnion and chorionic plate. Since the solute exchanges between fetus and mother take place in fetal membranes, our data suggest that syndecans are important players in the placenta for the establishment of the fetal-maternal inter-communication.

摘要

黏附素家族由哺乳动物中四个不同的膜糖蛋白组成。黏附素通过参与细胞-细胞相互作用、细胞与细胞外环境的锚定以及多种生长因子的调节,控制细胞的增殖、分化、黏附和迁移。因此,黏附素可能在依赖于细胞微环境的细胞行为调节中发挥关键作用。在这里,我们证明黏附素-1、黏附素-2 和黏附素-4 在胎膜组织中有不同的免疫定位表达。黏附素-1 表达于羊膜上皮细胞,位于基底外侧细胞表面。而黏附素-2 和黏附素-4 则主要定位于细胞内区室,在绒毛外滋养细胞和胎盘绒毛板的一些成纤维细胞以及羊膜上皮细胞中表达。在后一种细胞中,黏附素-4 主要定位于细胞的顶端部分。我们的结果强烈表明黏附素-1、黏附素-2 和黏附素-4 在决定人羊膜和绒毛板的结构和功能特征方面具有关键作用。由于胎儿和母体之间的溶质交换发生在胎儿膜中,我们的数据表明黏附素是胎盘建立胎儿-母体通讯的重要参与者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95c2/3167323/b891b4e74fbf/ejh-2010-4-e42-g001.jpg

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