首页> 外文期刊>Clinical and experimental nephrology >Podocyte penetration of the glomerular basement membrane to contact on the mesangial cell at the lesion of mesangial interposition in lupus nephritis: a three-dimensional analysis by serial block-face scanning electron microscopy
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Podocyte penetration of the glomerular basement membrane to contact on the mesangial cell at the lesion of mesangial interposition in lupus nephritis: a three-dimensional analysis by serial block-face scanning electron microscopy

机译:肾小球基底膜的泛粒细胞渗透到狼疮性肾炎中梭菌介入的病变中的乳房细胞上的接触:通过连续块扫描电子显微镜进行三维分析

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BackgroundThe interaction among the glomerular components plays an important role in the development of glomerular lesions; thus, investigation of the ultrastructural three-dimensional (3D) configuration of the human glomerular cells and extracellular matrix (ECM) is important for understanding the pathogenesis of glomerulosclerosis, especially glomerulonephritis.MethodsWe applied a new technique of serial block-face scanning electron microscopy (SBF-SEM), which helps to acquire serial electron microscopic images to reconstruct a 3D ultrastructure, to a human kidney biopsy specimen obtained from a 25-year-old woman with lupus nephritis.ResultsSBF-SEM demonstrated that the cytoplasmic processes of the podocyte penetrated into the lamina densa of the glomerular basement membrane, and was in direct contact with the cytoplasm of mesangial cells at the site of mesangial interposition.ConclusionAlthough this is a single-case observational study, SBF-SEM revealed a unique 3D configuration, suggesting a novel mechanism of direct intercellular cross-communication between podocytes and mesangial cells, aside from the presumed paracrine communication.
机译:背景技术肾小球组分之间的相互作用在肾小球病变的发展中起重要作用;因此,对人肾小球细胞和细胞外基质(ECM)的超微结构三维(3D)构型的研究对于了解肾小球粥样硬化的发病机制,尤其是肾小球肾炎的发病机制是重要的.Thodswe应用了一种新的连续块扫描电子显微镜技术技术( SBF-SEM)有助于获取连续电子显微图像以重建3D超超微结构,从狼疮肾炎的25岁女性中获得的人肾活检标本。探查症渗透的细胞质过程进入肾小球基底膜的椎板Densa,并与Mesangial Internation的部位直接接触Mesangial细胞的细胞质。虽然这是一个单一的观察研究,SBF-SEM揭示了一种独特的3D配置,表明了一种小说除了多胞细胞和纱线细胞之间的直肠交叉通信的机制推定的帕拉卡林沟通。

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