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肾脏对盐平衡的调节:非纯粹主义者入门指南。

Renal regulation of salt balance: a primer for non-purists.

作者信息

Sonnenberg H

机构信息

Department of Physiology, University of Toronto, Ontario, Canada.

出版信息

Pediatr Nephrol. 1990 Jul;4(4):354-7. doi: 10.1007/BF00862517.

Abstract

The greater than 40-fold range of voluntary salt intake in humans requires corresponding adjustments in renal excretion to maintain balance. Although many mechanisms have been implicated in the regulation of salt output by the kidney, surprisingly little consideration has been given to their quantitative significance and possible interaction. This survey summarizes the effects of changes in glomerular filtration rate, proximal peritubular physical factors, and plasma concentrations of aldosterone and atrial natriuretic factor (ANF), singly and in combination, on the level of salt excretion. Contrary to expectation, even large increases in filtration or decreases in proximal reabsorption have only minor natriuretic effects, due to constancy of fractional reabsorption in downstream nephron segments. Lack of aldosterone release increases salt excretion as much or more than the upstream mechanisms, whereas ANF-induced inhibition of reabsorption in the medullary collecting duct has the largest effect. It may be concluded, therefore, that the potency of these natriuretic factors increases with distance along the nephron, even though each is operating on a progressively small tubular load. However, none of the mechanisms, in isolation, is sufficient to explain salt balance over the range of voluntary intake. Combination of factors demonstrates synergism rather than simple additivity, resulting in more than enough reserve capacity for salt excretion.

摘要

人类自愿摄入盐分的范围超过40倍,这就需要肾脏排泄做出相应调整以维持平衡。尽管许多机制都与肾脏对盐分排出的调节有关,但令人惊讶的是,人们很少考虑它们的定量意义和可能的相互作用。本综述总结了肾小球滤过率、近端肾小管周围物理因素、醛固酮和心房利钠因子(ANF)血浆浓度单独及联合变化对盐分排泄水平的影响。与预期相反,即使滤过大幅增加或近端重吸收减少,由于下游肾单位节段分数重吸收的恒定,利钠作用也很小。醛固酮释放缺乏所增加的盐分排泄与上游机制增加的一样多甚至更多,而ANF诱导的髓质集合管重吸收抑制作用最大。因此可以得出结论,尽管这些利钠因子作用于逐渐减少的小管负荷,但它们的效力沿肾单位距离增加。然而,没有一种机制单独足以解释在自愿摄入范围内的盐分平衡。多种因素的组合显示出协同作用而非简单相加,从而产生了足够的盐分排泄储备能力。

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