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首页> 外文期刊>American Journal of Physiology >Dual activation of CFTR and CLCN2 by lubiprostone in murine nasal epithelia
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Dual activation of CFTR and CLCN2 by lubiprostone in murine nasal epithelia

机译:鲁比前列酮在小鼠鼻上皮细胞中双重激活CFTR和CLCN2

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Multiple sodium and chloride channels on the apical surface of nasal epithelial cells contribute to periciliary fluid homeostasis, a function that is disrupted in patients with cystic fibrosis (CF). Among these channels is the chloride channel CLCN2, which has been studied as a potential alternative chloride efflux pathway in the absence of CFTR. The object of the present study was to use the nasal potential difference test (NPD) to quantify CLCN2 function in an epithelial-directed TetOn CLCN2 transgenic mouse model (TGN-K18rtTA-hCLCN2) by using the putative CLCN2 pharmacological agonist lubiprostone and peptide inhibitor GaTx2. Lubiprostone significantly increased chloride transport in the CLCN2-overexpressing mice following activation of the transgene by doxycycline. This response to lubiprostone was significantly inhibited by GaTx2 after CLCN2 activation in TGN-CLCN2 mice. Cftr-/- and Clc2-/- mice showed hyperpolarization indicative of chloride efflux in response to lubiprostone, which was fully inhibited by GaTx2 and CFTR inhibitor 172 + GlyH-101, respectively. Our study reveals lubiprostone as a pharmacological activator of both CFTR and CLCN2. Overexpression and activation of CLCN2 leads to improved mouse NPD readings, suggesting it is available as an alternative pathway for epithelial chloride secretion in murine airways. The utilization of CLCN2 as an alternative chloride efflux channel could provide clinical benefit to patients with CF, especially if the pharmacological activator is administered as an aerosol.
机译:鼻上皮细胞顶表面上的多个钠和氯通道可促进睫状液的稳态,这种功能在囊性纤维化(CF)患者中被破坏。在这些通道中,有氯离子通道CLCN2,在没有CFTR的情况下,已将其作为潜在的替代氯离子流出途径进行了研究。本研究的目的是使用鼻电势差试验(NPD)通过使用假定的CLCN2药理激动剂鲁比前列酮和肽抑制剂GaTx2定量上皮定向TetOn CLCN2转基因小鼠模型(TGN-K18rtTA-hCLCN2)中的CLCN2功能。 。在强力霉素激活转基因后,鲁比前列酮显着增加了过表达CLCN2的小鼠的氯化物转运。在TGN-CLCN2小鼠中激活CLCN2后,GaTx2明显抑制了对鲁比前列酮的反应。 Cftr-/-和Clc2-/-小鼠表现出超极化现象,表明对卢比前列酮的反应是氯化物外排,分别被GaTx2和CFTR抑制剂172 + GlyH-101完全抑制。我们的研究表明,鲁比前列酮既可作为CFTR又可作为CLCN2的药理激活剂。 CLCN2的过表达和激活可导致小鼠NPD读数的改善,表明它可作为鼠气道中上皮氯化物分泌的替代途径。利用CLCN2作为替代氯离子流出通道可以为CF患者提供临床益处,尤其是如果药理激活剂以气雾剂形式给药。

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