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近端肾小管内压力振荡的同步:肾单位间相互作用的证据

Synchronization of proximal intratubular pressure oscillations: evidence for interaction between nephrons.

作者信息

Holstein-Rathlou N H

出版信息

Pflugers Arch. 1987 May;408(5):438-43. doi: 10.1007/BF00585066.

Abstract

Previous studies in rat kidneys have demonstrated that oscillations in the proximal intratubular pressure are a prominent feature of the tubulo-glomerular feedback mechanism (TGF) operating during free flow conditions. The purpose of the present study was to investigate whether a subpopulation of synchronized, interacting nephrons could be detected. In group A nephrons, i.e., nephrons with a high probability of having their afferent arterioles arising from the same interlobular artery, 29 out of 33 pairs of nephrons were found to show synchronized pressure oscillations. In group B nephrons, not expected to have this common origin of their afferent arterioles, only 1 out of 23 pairs was found to be synchronized. The standard deviation of the frequency differences was 0.063 cycles per minute in group A nephron pairs and 0.202 cycles per minute in group B pairs (p less than 0.05), showing the greater homogeneity in frequency in group A. Furthermore, nephrons having synchronized pressure oscillations were found to interact with each other. Thus, perturbation of the proximal tubular pressure oscillations in one nephron by loop microperfusion affected the amplitude of the pressure oscillations in the non-perfused nephron; and reactivation of pressure oscillations in one nephron was followed by reactivation of oscillations in the non-perfused nephron. Thus, the present results show that there exists a well defined subpopulation of nephrons, in which the TGF-mediated proximal pressure oscillations are synchronized. This synchronization is a result of interaction between the different nephrons.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

先前对大鼠肾脏的研究表明,在自由流动条件下运行的肾小管-肾小球反馈机制(TGF)的一个显著特征是近端肾小管内压力的振荡。本研究的目的是调查是否能检测到一组同步、相互作用的肾单位。在A组肾单位中,即其入球小动脉很可能来自同一叶间动脉的肾单位,33对肾单位中有29对显示出同步压力振荡。在B组肾单位中,预计其入球小动脉没有这种共同起源,23对中只有1对是同步的。A组肾单位对频率差异的标准差为每分钟0.063次循环,B组为每分钟0.202次循环(p小于0.05),表明A组频率的同质性更高。此外,发现有同步压力振荡的肾单位相互作用。因此,通过袢微灌注对一个肾单位近端肾小管压力振荡的扰动会影响未灌注肾单位压力振荡的幅度;一个肾单位压力振荡的重新激活会随之引起未灌注肾单位振荡的重新激活。因此,目前的结果表明,存在一个明确的肾单位亚群,其中TGF介导的近端压力振荡是同步的。这种同步是不同肾单位之间相互作用的结果。(摘要截短于250字)

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