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首页> 外文期刊>American Journal of Physiology >A quantitative analysis of electrolyte exchange in the salivary duct
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A quantitative analysis of electrolyte exchange in the salivary duct

机译:唾液管中电解质交换的定量分析

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A healthy salivary gland secretes saliva in two stages. First, acinar cells generate primary saliva, a plasma-like, isotonic fluid high in Na~+ and Cl~-. In the second stage, the ducts exchange Na~+ and Cl~-for K~+ and HCO3_3~-, producing a hypotonic final saliva with no apparent loss in volume. We have developed a tool that aims to understand how the ducts achieve this electrolyte exchange while maintaining the same volume. This tool is part of a larger multi-scale model of the salivary gland and can be used at the duct or gland level to investigate the effects of genetic and chemical alterations. In this study, we construct a radially symmetric mathematical model of the mouse salivary gland duct, representing the lumen, the cell, and the interstitium. For a given flow and primary saliva composition, we predict the potential differences and the luminal and cytosolic concentrations along a duct. Our model accounts well for experimental data obtained in wild-type animals as well as knockouts and chemical inhibitors. Additionally, the luminal membrane potential of the duct cells is predicted to be very depolarized compared with acinar cells. We investigate the effects of an electrogenic vs. electroneutral anion exchanger in the luminal membrane on concentration and the potential difference across the luminal membrane as well as how impairing the cystic fibrosis transmembrane conductance regulator channel affects other ion transporting mechanisms. Our model suggests the electrogenicity of the anion exchanger has little effect in the submandibular duct.
机译:健康的唾液腺分两个阶段分泌唾液。首先,腺泡细胞产生初级唾液,这是一种血浆样的等渗液,富含Na〜+和Cl〜-。在第二阶段,导管将Na〜+和Cl〜-交换为K〜+和HCO3_3〜-,产生低渗的最终唾液,但体积没有明显减少。我们开发了一种工具,旨在了解管道如何在保持相同体积的同时实现这种电解质交换。该工具是唾液腺的大型多尺度模型的一部分,可以在导管或腺体水平使用,以研究遗传和化学改变的影响。在这项研究中,我们构建了小鼠唾液腺导管的径向对称数学模型,代表了管腔,细胞和间质。对于给定的流量和主要唾液成分,我们预测了沿导管的电位差以及管腔和胞质浓度。我们的模型很好地说明了在野生型动物以及基因敲除和化学抑制剂中获得的实验数据。另外,与腺泡细胞相比,预计导管细胞的腔膜电位非常去极化。我们研究了在腔膜中电对电子中性阴离子交换剂对腔膜上的浓度和电位差的影响,以及对囊性纤维化跨膜电导调节剂通道的损害如何影响其他离子转运机制。我们的模型表明,阴离子交换剂的电原性对下颌下导管的影响很小。

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