首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Confocal and conventional immunofluorescence and ultrastructural localisation of intracellular strength-giving components of human amniochorion.
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Confocal and conventional immunofluorescence and ultrastructural localisation of intracellular strength-giving components of human amniochorion.

机译:共聚焦和常规免疫荧光以及人羊膜穿膜细胞内增强强度成分的超微结构定位。

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摘要

Key cytoskeletal polypeptides of human fetal membranes have been localised at subcellular level using confocal and conventional indirect immunofluorescence microscopy. Correlation with electron microscope data has allowed us to examine how cellular compartments of this multilaminar tissue maintain their mechanical integrity until the time of membrane rupture at parturition. Evidence is presented for myofibroblastic characteristics of cells in both the fibroblast and reticular layers which may therefore have tension-generating, position-adjustment and wound-healing roles in the amniochorion. Desmin and vimentin are coexpressed in these cells, but a small localised population of cells in the fibroblast layer contains vimentin alone. An interaction of cytokeratin filaments with nuclei and desmosomes of amniotic epithelium in vivo is demonstrated, indicating that nuclei of cells of ectodermal origin are integrated into a mechanical structure extending throughout the tissue as a whole. Cells of the basal 1 or 2 layers of trophoblast have been shown to have a more extensive and better integrated cytoskeletal organisation than those overlying and forming the boundary with decidua. Structures within the trophoblast, identified previously as degenerate villi, contain cells with intermediate filaments with similar immunofluorescence properties to those of the neighbouring reticular layer and thus may represent papillae that prevent shearing at this interface.
机译:使用共聚焦和常规间接免疫荧光显微镜技术已将人胎膜的关键细胞骨架多肽定位在亚细胞水平。与电子显微镜数据的相关性使我们能够检查这种多层组织的细胞腔室如何保持其机械完整性,直到分娩时膜破裂为止。提出了成纤维细胞和网状层中细胞的肌成纤维细胞特征的证据,因此在羊膜穿刺中可能具有产生张力,调节位置和伤口愈合的作用。结蛋白和波形蛋白在这些细胞中共表达,但成纤维细胞层中的一小部分局部细胞仅含有波形蛋白。证明了细胞角蛋白丝与羊膜上皮细胞核和桥粒的相互作用在体内,表明外胚层来源的细胞核被整合到整个组织中延伸的机械结构中。与覆盖并与蜕膜形成边界的细胞相比,基底层1或2层滋养层细胞具有更广泛和更好的整合细胞骨架组织。滋养层中的结构先前被鉴定为简并绒毛,其细胞中的细丝具有与邻近网状层相似的免疫荧光特性,因此可能代表防止在该界面处剪切的乳突。

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