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根据筛分数据测定肾小球毛细血管内和跨毛细血管压力梯度。II. 对正常犬的生理学研究。

Determination of glomerular intracapillary and transcapillary pressure gradients from sieving data. II. A physiological study in the normal dog.

作者信息

Lambert P P, Du Bois R, Decoodt P, Gassée J P, Verniory A

出版信息

Pflugers Arch. 1975 Aug 29;359(1-2):1-22. doi: 10.1007/BF00581274.

DOI:10.1007/BF00581274
PMID:1239723
Abstract

The two theoretical models proposed previously to calculate the intracapillary and transcapillary glomerular pressure gradients from the sieving of macromolecules such as PVP have been used to analyse in 22 normotensive dogs the sieving curve relating the sieving coefficients, phi, to molecular size (phi: glomerular clearance of PVP fractions/GFR). Neither the "local c2" model-filtrate unmixed at the outer face of the capillaries walls--nor the constant c2 model-filtrate well mixed--allowed to obtain realistic values for the hemodynamical parameters. Indeed with the local c2 model, the best fit between calculated and experimental sieving curves could be obtained only by reversing the intracapillary pressure gradient; conversely the constant c2 model obliged to decrease the intracapillary pressure so abruptly along the capillaries, that retrofiltration took place in the distal parts of the vessels. This difficulty has been overcome by combining the two models; the so-called "hybrid model" considers that the filtrate is well mixed in the vicinity of the urinary pole only. The following results were obtained: 1. PGCa and PGCe (intracapillary pressures at the afferent and efferent extremities of the capillaries) equal to 49.7 +/- 1.03 and 41.8 +/- 1.00 mm Hg respectively. 2. Pressure equilibrium is generally reached at the efferent extremity of the vessels. 3. The slope of PGC (see article) varies inversely to FF. (filtration fraction). 4. The model, however, does not allow to rule out the possibility of retrofiltration.

摘要

先前提出的两种理论模型,用于根据诸如聚乙烯吡咯烷酮(PVP)等大分子的筛分来计算毛细血管内和跨毛细血管的肾小球压力梯度。这两种模型已被用于分析22只血压正常的犬的筛分曲线,该曲线将筛分系数φ与分子大小相关联(φ:PVP各组分的肾小球清除率/肾小球滤过率)。无论是“局部c2”模型(毛细血管壁外表面处滤液未混合)还是恒定c2模型(滤液充分混合),都无法获得血流动力学参数的实际值。实际上,对于局部c2模型,只有通过反转毛细血管内压力梯度,才能在计算的和实验的筛分曲线之间获得最佳拟合;相反,恒定c2模型迫使毛细血管内压力沿毛细血管如此突然地降低,以至于在血管的远端发生了逆向滤过。通过将这两种模型结合,克服了这一困难;所谓的“混合模型”认为,滤液仅在尿极附近充分混合。得到了以下结果:1. 毛细血管入端和出端的毛细血管内压力(PGCa和PGCe)分别等于49.7±1.03和41.8±1.00 mmHg。2. 压力平衡通常在血管的出端达到。3. 毛细血管内压力(见文章)的斜率与滤过分数(FF)成反比。4. 然而,该模型不能排除逆向滤过的可能性。

相似文献

1
Determination of glomerular intracapillary and transcapillary pressure gradients from sieving data. II. A physiological study in the normal dog.根据筛分数据测定肾小球毛细血管内和跨毛细血管压力梯度。II. 对正常犬的生理学研究。
Pflugers Arch. 1975 Aug 29;359(1-2):1-22. doi: 10.1007/BF00581274.
2
Determination of glomerular intracapillary and transcapillary pressure gradients from sieving data. I. A mathematical model.
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The role of membrane parameters and of filtration pressure in the determination of the shape of the polyvinylpyrrolidone sieving curve. An in vitro and in vivo study.膜参数和过滤压力在聚乙烯吡咯烷酮筛分曲线形状测定中的作用。一项体外和体内研究。
Contrib Nephrol. 1975;1:9-20. doi: 10.1159/000398223.
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The measurement of glomerular filtration pressure from sieving data for macromolecules.通过大分子筛分数据测量肾小球滤过压。
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Measurement of the glomerular filtration pressure from sieving data for macromolecules.根据大分子筛分数据测量肾小球滤过压。
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A model for sieving of macromolecules by the glomerular membrane of the kidney.一种关于肾脏肾小球膜对大分子进行筛选的模型。
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Filtration dynamics in dogs: glomerular capillary pressure.犬类的滤过动力学:肾小球毛细血管压力
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引用本文的文献

1
Biophysical basis of glomerular permselectivity.肾小球滤过选择性的生物物理基础。
J Membr Biol. 1983;71(1-2):1-10. doi: 10.1007/BF01870670.
2
Determination of glomerular intracapillary and transcapillary pressure gradients from sieving data. 3. The effects of angiotensin II.根据筛分数据测定肾小球毛细血管内和跨毛细血管压力梯度。3. 血管紧张素II的作用。
Pflugers Arch. 1976 Nov 30;367(1):15-24. doi: 10.1007/BF00583651.
3
Permeability of artificial membranes to a pluridisperse solution of 125I-polyvinylpyrrolidone.人工膜对¹²⁵I-聚乙烯吡咯烷酮多分散溶液的渗透性。

本文引用的文献

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A photometric method for the determination of insulin in plasma and urine.一种测定血浆和尿液中胰岛素的光度法。
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Clin Chim Acta. 1972 Mar;37:309-22. doi: 10.1016/0009-8981(72)90450-0.
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Effects of acetylcholine on glomerular sieving of macromolecules.乙酰胆碱对大分子物质肾小球滤过的影响。
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9
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10
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