首页> 外文期刊>Nephron >Ultrastructural study of anionic sites in glomerular basement membranes at different perfusion pressures by quick-freezing and deep-etching method.
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Ultrastructural study of anionic sites in glomerular basement membranes at different perfusion pressures by quick-freezing and deep-etching method.

机译:通过快速冷冻和深蚀刻方法研究不同灌注压力下肾小球基底膜中阴离子部位的超微结构。

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摘要

The ultrastructures of anionic sites in rat glomerular basement membranes (GBM) were studied at different perfusion pressures of 100, 150, 200 or 250 cm H2O by a quick-freezing and deep-etching (QF-DE) method, in addition to conventional fixation methods, using polyethyleneimine (PEI) as a cationic tracer. By the QF-DE method, three-dimensional ultrastructures at each pressure were observed more clearly than those seen on conventional ultrathin sections. When the perfusion pressures were changed from low levels to higher ones, the total thickness of GBM with anionic sites became gradually thinner. Many PEI particles were observed around filaments, not only in the laminae lucidae, but also in the lamina densa. These findings indicated the existence of anionic sites in both laminae lucidae and lamina densa of GBM. The numbers of PEI particles in the lamina rara externa were counted on conventional ultrathin sections for morphometric analyses. The numbers per unit length of GBM were significantly decreased at higher perfusion pressures (200 and 250 cm H2O) than those seen at both normal (150 cm H2O) and lower (100 cm H2O) pressures. It is concluded that the ultrastructures of anionic sites in the GBM may be changed in vivo, depending on the hemodynamics in the glomerular capillary.
机译:除了常规固定外,还通过快速冷冻和深蚀刻(QF-DE)方法研究了大鼠肾小球基底膜(GBM)在100、150、200或250 cm H2O的不同灌注压力下阴离子位点的超微结构。方法,使用聚乙烯亚胺(PEI)作为阳离子示踪剂。通过QF-DE方法,在每个压力下的三维超微结构都比在常规超薄切片上看到的更为清晰。当灌注压力从低到高变化时,带有阴离子位的GBM的总厚度逐渐变薄。不仅在灵芝层中,而且在薄层中也观察到许多PEI颗粒。这些发现表明在GBM的叶片层和叶片层中都存在阴离子位点。在常规超薄切片上计数外部raina rain中PEI颗粒的数量,以进行形态分析。在较高的灌注压力(200和250 cm H2O)下,单位长度GBM的数量明显低于在正常(150 cm H2O)和较低(100 cm H2O)压力下的数量。结论是,取决于肾小球毛细血管的血流动力学,GBM中阴离子部位的超微结构可能会在体内发生变化。

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