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细胞旁途径在等渗液跨肾小管移动中的作用。

Role of the paracellular pathway in isotonic fluid movement across the renal tubule.

作者信息

Boulpaep E L, Sackin H

出版信息

Yale J Biol Med. 1977 Mar-Apr;50(2):115-31.

Abstract

Evidence for a highly permeable paracellular shunt in the proximal tubule is reviewed. The paracellular pathway is described as a crucial site for the regulation of net absorption and for solute-solvent interaction. Available models for the coupling of salt and water transport are assessed with respect to the problem of isotonic water movement. Two new models are proposed taking into account that the tight junctions are permeable to salt and water and that active transport sites for sodium are distributed uniformly along the lateral cell membrane. The first model (continuous model) is a modification of Diamond and Bossert's proposal using different assumptions and boundary conditions. No appreciable standing gradients are predicted by this model. The second model (compartmental model) is an expansion of Curran's double membrane model by including additional compartments and driving forces. Both models predict a reabsorbate which is not isosmotic. For the particular case of the proximal tubule it is shown that in the presence of a leaky epithelium these deviations from isotonicity might have escaped experimental observation.

摘要

本文综述了近端小管中存在高度通透的细胞旁分流的证据。细胞旁途径被描述为调节净吸收和溶质 - 溶剂相互作用的关键部位。针对等渗水移动问题,评估了现有的盐和水转运耦合模型。考虑到紧密连接对盐和水具有通透性且钠的主动转运位点沿细胞膜外侧均匀分布,提出了两个新模型。第一个模型(连续模型)是对戴蒙德和博泽特提议的修改,采用了不同的假设和边界条件。该模型预测不存在明显的固定梯度。第二个模型(房室模型)是对柯伦双膜模型的扩展,纳入了额外的房室和驱动力。两个模型都预测重吸收液不是等渗的。对于近端小管的特殊情况,结果表明在存在渗漏上皮的情况下,这些与等渗性的偏差可能未被实验观察到。

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