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分离灌注的美西螈近端小管:流体动力学调节超微结构。

Isolated perfused Ambystoma proximal tubule: hydrodynamics modulates ultrastructure.

作者信息

Tripathi S, Boulpaep E L, Maunsbach A B

出版信息

Am J Physiol. 1987 Jun;252(6 Pt 2):F1129-47. doi: 10.1152/ajprenal.1987.252.6.F1129.

Abstract

A method using a pressure-sensing servo-pipette is described for measuring downstream transepithelial pressure within isolated renal tubules perfused at flow rates designed to keep luminal solution composition constant. The hydrodynamics of in vitro microperfusion of isolated proximal tubules of Ambystoma tigrinum was varied and different states of transepithelial hydrostatic pressure difference, axial tubule flow, and transepithelial transport were correlated with epithelial ultrastructure. Tubules analyzed by ultrastructural morphometry were as follows: unperfused with and without ouabain, perfused single-end cannulated with and without ouabain, and perfused double-end cannulated tubules incubated in substrate Ringer. The results indicate that proximal tubule fine structure is well preserved for more than 3 h in unperfused and perfused tubules. Small transepithelial hydrostatic pressure gradients (less than 162 Pa) increase tubule diameters and decrease cell height without changing volumes of the cells, lateral intercellular spaces (LIS), or the basal extracellular labyrinth (BEL). Pressure gradients of 271 Pa have no further effect on tubule diameters or cell height, but significantly reduce volumes of LIS and BEL. Transport inhibition and axial flow changes have minor structural effects. This study demonstrates a close dependence of tubule ultrastructure on hydrodynamic conditions and provides guidelines for optimizing the latter during perfusion of isolated renal tubules.

摘要

描述了一种使用压力传感伺服移液器的方法,用于测量在以保持管腔溶液成分恒定的流速灌注的离体肾小管内的下游跨上皮压力。改变了有虎纹钝口螈离体近端肾小管体外微灌注的流体动力学,并将跨上皮静水压力差、肾小管轴向流和跨上皮转运的不同状态与上皮超微结构相关联。通过超微结构形态计量学分析的肾小管如下:未灌注有和没有哇巴因的、单端插管灌注有和没有哇巴因的,以及在底物林格液中孵育的双端插管灌注肾小管。结果表明,在未灌注和灌注的肾小管中,近端肾小管的精细结构在超过3小时内保存良好。小的跨上皮静水压力梯度(小于162帕斯卡)会增加肾小管直径并降低细胞高度,而不会改变细胞体积、细胞间侧向间隙(LIS)或基底细胞外迷路(BEL)。271帕斯卡的压力梯度对肾小管直径或细胞高度没有进一步影响,但会显著减小LIS和BEL的体积。转运抑制和轴向流变化对结构的影响较小。本研究证明了肾小管超微结构对流体动力学条件的密切依赖性,并为在离体肾小管灌注期间优化后者提供了指导。

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