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Actions of Hydrogen Sulfide on Sodium Transport Processes across Native Distal Lung Epithelia (Xenopus laevis)

机译:硫化氢对钠在整个远端肺上皮细胞(Xenopus laevis)中转运过程的作用

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摘要

Hydrogen sulfide (H2S) is well known as a highly toxic environmental chemical threat. Prolonged exposure to H2S can lead to the formation of pulmonary edema. However, the mechanisms of how H2S facilitates edema formation are poorly understood. Since edema formation can be enhanced by an impaired clearance of electrolytes and, consequently, fluid across the alveolar epithelium, it was questioned whether H2S may interfere with transepithelial electrolyte absorption. Electrolyte absorption was electrophysiologically measured across native distal lung preparations (Xenopus laevis) in Ussing chambers. The exposure of lung epithelia to H2S decreased net transepithelial electrolyte absorption. This was due to an impairment of amiloride-sensitive sodium transport. H2S inhibited the activity of the Na+/K+-ATPase as well as lidocaine-sensitive potassium channels located in the basolateral membrane of the epithelium. Inhibition of these transport molecules diminishes the electrochemical gradient which is necessary for transepithelial sodium absorption. Since sodium absorption osmotically facilitates alveolar fluid clearance, interference of H2S with the epithelial transport machinery provides a mechanism which enhances edema formation in H2S-exposed lungs.
机译:众所周知,硫化氢(H2S)是一种剧毒的环境化学威胁。长时间暴露于H2S会导致肺水肿的形成。但是,人们对H2S促进水肿形成的机制了解甚少。由于可以通过减少电解质的清除以及因此穿过肺泡上皮的液体的清除来增强水肿的形成,因此有人质疑H2S是否会干扰跨上皮电解质的吸收。在Ussing隔室中,对自然的远端肺部制剂(Xenopus laevis)进行电生理学测量。肺上皮细胞暴露于H2S会降低净上皮电解质吸收。这是由于对阿米洛利敏感的钠转运受到损害。 H2S抑制了Na + / K + -ATPase的活性以及上皮基底外侧膜中对利多卡因敏感的钾通道的活性。这些转运分子的抑制减小了跨上皮钠吸收所必需的电化学梯度。由于钠的吸收渗透促进了肺泡液的清除,H2S对上皮运输机械的干扰提供了一种机制,可增强暴露于H2S的肺中水肿的形成。

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    Alexandra Erb; Mike Althaus;

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  • 年(卷),期 -1(9),6
  • 年度 -1
  • 页码 e100971
  • 总页数 8
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