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Structural basis for reduced glomerular filtration capacity in nephrotic humans.

肾功能 化学 超滤(肾) 磁导率 过滤分数 肿大压 肾血流 肾病综合征 内分泌学 肾小球 泌尿科 肾小球基底膜 内科学 过滤(数学) 血管通透性 肾小球 肾小球肾炎 色谱法 医学 数学 白蛋白 生物化学 统计
作者
M. C. Drumond,Batya Kristal,Bryan D. Myers,William M. Deen
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:94 (3): 1187-1195 被引量:117
标识
DOI:10.1172/jci117435
摘要

Previous studies have established that in a variety of human glomerulopathies the reduced glomerular filtration rate (GFR) is due to a marked lowering of the ultrafiltration coefficient (Kf). To identify the factors which lower Kf, we measured the filtering surface area per glomerulus, filtration slit frequency, basement membrane thickness, and GFR and its determinants in patients with minimal change and membraneous nephropathies and in age-matched healthy controls. Overall values of Kf for the two kidneys were calculated from GFR, renal plasma flow rate, systemic colloid osmotic pressure, and three assumed values for the transcapillary pressure difference. "Experimental" values of the glomerular hydraulic permeability (kexp) were then calculated from Kf, glomerular filtering surface area, and estimates of the total number of nephrons of the two kidneys. Independent estimates of the glomerular hydraulic permeability (kmodel) were obtained using a recent mathematical model that is based on analyses of viscous flow through the various structural components of the glomerular capillary wall. Individual values of basement membrane thickness and filtration slit frequency were used as inputs in this model. The results indicate that the reductions of Kf in both nephropathies can be attributed entirely to reduced glomerular hydraulic permeability. The mean values of kexp and kmodel were very similar in both disorders and much smaller in the nephrotic groups than in healthy controls. There was good agreement between kexp and kmodel for any given group of subjects. It was shown that, in both groups of nephrotics, filtration slit frequency was a more important determinant of the water flow resistance than was basement membrane thickness. The decrease in filtration slit frequency observed in both disorders caused the average path length for the filtrate to increase, thereby explaining the decreased hydraulic permeability.

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