循环糖化白蛋白和肾小球阴离子电荷。

I Londoño, D Gingras, M Bendayan
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引用次数: 4

摘要

为了了解循环糖化白蛋白改变肾小球滤过特性导致糖尿病肾小球功能障碍的机制,作者研究了在血管内输注Amadori产品时,以及在肾小球过电选择性增加的各种情况下,通过大鼠肾小球壁阴离子电荷的分布和密度。用聚赖氨酸-金作为探针来揭示阴离子电荷。在正常血糖水平的牛血清白蛋白(BSA)和糖化BSA注射动物肾脏组织切片上进行了研究。结果是通过对金标的形态计量学评价产生的。在短期、长期糖尿病大鼠和正常新生大鼠的肾脏组织切片上证实了肾小球阴离子分布的变化,这种情况被称为肾小球滤过异常。这些情况下肾功能的改变明显与肾小球阴离子电荷的改变有关。另一方面,在正常大鼠循环中输注糖化白蛋白,虽然改变了肾小球滤过特性,但没有改变肾小球基底膜上聚赖氨酸金标的分布和密度。因此,阴离子电荷似乎不是循环糖化白蛋白引起肾小球通透性早期改变的因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Circulating glycated albumin and glomerular anionic charges.

Aiming to discern the mechanisms by which circulating glycated albumin alters the glomerular filtration properties that lead to glomerular dysfunction in diabetes, the authors studied the distribution and densities of anionic charges through the rat glomerular wall upon intravascular infusion of Amadori products, as well as in various conditions of increased glomerular permselectivity. Polylysine-gold was used as the probe to reveal the anionic charges. The study was carried on renal tissue sections of bovine serum albumin (BSA)- and glycated BSA-injected, normoglycemic animals. Results were generated through morphometrical evaluations of the gold labeling. Changes in glomerular anionic distribution were corroborated on renal tissue sections of short- and long-term diabetic rats and of normal newborn rats, situations known for abnormal glomerular filtration. Altered renal function in these conditions was clearly associated with changes in glomerular anionic charges. On the other hand, the infusion of glycated albumin in the circulation of normal rats, though altering glomerular filtration properties, did not modify the distribution and density of the polylysine-gold labeling through the glomerular basement membrane. Thus, anionic charges seem not to be the factor involved in the early changes of glomerular permeability induced by circulating glycated albumin.

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