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The Relative Roles of Passive Surface Forces and Active Ion Transport in the Modulation of Airway Surface Liquid Volume and Composition

机译:被动表面力和主动离子传输在气道表面液体体积和成分调节中的相对作用

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Two hypotheses have been proposed recently that offer different views on the role of airway surface liquid (ASL) in lung defense. The “compositional” hypothesis predicts that ASL [NaCl] is kept low (50 mM) by passive forces to permit antimicrobial factors to act as a chemical defense. The “volume” hypothesis predicts that ASL volume (height) is regulated isotonically by active ion transport to maintain efficient mechanical mucus clearance as the primary form of lung defense. To compare these hypotheses, we searched for roles for: (1) passive forces (surface tension, ciliary tip capillarity, Donnan, and nonionic osmolytes) in the regulation of ASL composition; and (2) active ion transport in ASL volume regulation. In primary human tracheobronchial cultures, we found no evidence that a low [NaCl] ASL could be produced by passive forces, or that nonionic osmolytes contributed substantially to ASL osmolality. Instead, we found that active ion transport regulated ASL volume (height), and that feedback existed between the ASL and airway epithelia to govern the rate of ion transport and volume absorption. The mucus layer acted as a “reservoir” to buffer periciliary liquid layer height (7 μm) at a level optimal for mucus transport by donating or accepting liquid to or from the periciliary liquid layer, respectively. These data favor the active ion transport/volume model hypothesis to describe ASL physiology.
机译:最近提出了两种假设,它们对气道表面液(ASL)在肺部防御中的作用提供了不同的观点。 “成分”假设预测,被动力可使ASL [NaCl]保持在较低水平(<50 mM),以使抗菌素起化学防御作用。 “体积”假说预测,ASL的体积(高度)通过主动离子传输等渗调节,以维持有效的机械粘液清除率作为肺部防御的主要形式。为了比较这些假设,我们寻找以下方面的作用:(1)被动力(表面张力,睫状毛细血管毛细作用,Donnan和非离子渗透物)在ASL成分的调节中; (2)ASL体积调节中的主动离子传输。在原发性人类气管支气管培养物中,我们没有发现证据表明被动力可能产生低[NaCl] ASL,或者非离子渗透物对ASL重量摩尔渗透压浓度的贡献很大。相反,我们发现主动离子传输调节了ASL的体积(高度),并且在ASL和气道上皮之间存在反馈来控制离子传输和体积吸收的速率。粘液层充当“储液室”,通过分别向或从周液层供液或接受液,将周液层的高度(7μm)缓冲在最适合粘液运输的水平。这些数据支持主动离子迁移/体积模型假说来描述ASL生理学。

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