首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Immunohistochemical studies of reflux nephropathy. The role of extracellular matrix membrane attack complex and immune cells in glomerular sclerosis.
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Immunohistochemical studies of reflux nephropathy. The role of extracellular matrix membrane attack complex and immune cells in glomerular sclerosis.

机译:反流性肾病的免疫组织化学研究。细胞外基质膜攻击复合物和免疫细胞在肾小球硬化中的作用。

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摘要

Renal tissue obtained from 8 patients with reflux nephropathy was studied by immunofluorescence with well-defined mono- and polyclonal antibodies to extracellular matrix, intermediate filament proteins, membrane attack complex of complement (MAC), and immune cells. In both unscarred and scarred areas of the tissue, intrinsic components of the human glomeruli, such as Type IV collagen, laminin, and fibronectin, accumulated in the expanded mesangium of the glomeruli. Those components were diminished or absent in the hyalinized glomeruli. Type III collagen was occasionally localized to the mesangium and synechiae in the glomeruli and was frequently observed within the nearly hyalinized glomeruli. MAC was co-deposited with C3, C5, C9, and properdin in the sclerotic area of the glomeruli, along with a decrease in the reactivity of podocytes with anti-vimentin antibody. Numerous suppressor/cytotoxic T cells were identified in the glomeruli and widened interstitum. Monocytes/macrophages also infiltrated the glomeruli. The present study suggests that accumulation of extracellular matrix, activation of the complement system, and infiltration of suppressor/cytotoxic T cells and monocytes/macrophages are closely associated with the glomerular obsolescence and the progression of reflux nephropathy.
机译:使用明确的针对细胞外基质,中间细丝蛋白,补体膜攻击复合物(MAC)的复合物和免疫细胞的单克隆和多克隆抗体,通过免疫荧光研究了8例反流性肾病患者的肾脏组织。在组织的无疤痕和疤痕区域,人肾小球的固有成分(例如IV型胶原蛋白,层粘连蛋白和纤连蛋白)积累在肾小球的扩大的系膜中。透明化肾小球中这些成分减少或不存在。 III型胶原偶尔会定位于肾小球的系膜和粘膜,并经常在几乎透明的肾小球内观察到。 MAC与C3,C5,C9和备解素共沉积在肾小球的硬化区域,同时足细胞与抗波形蛋白抗体的反应性降低。在肾小球和间质增宽中鉴定出许多抑制/细胞毒性T细胞。单核细胞/巨噬细胞也渗入肾小球。本研究表明,细胞外基质的积累,补体系统的活化以及抑制性/细胞毒性T细胞和单核细胞/巨噬细胞的浸润与肾小球过时和反流性肾病的进展密切相关。

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