首页> 外文期刊>American Journal of Physiology >Synthetic chloride channel restores glutathione secretion in cystic fibrosis airway epithelia.
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Synthetic chloride channel restores glutathione secretion in cystic fibrosis airway epithelia.

机译:合成氯通道可恢复囊性纤维化气道上皮中的谷胱甘肽分泌。

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Cystic fibrosis (CF), an inherited disease characterized by defective epithelial Cl- transport, damages lungs via chronic inflammation and oxidative stress. Glutathione, a major antioxidant in the epithelial lung lining fluid, is decreased in the apical fluid of CF airway epithelia due to reduced glutathione efflux (Gao L, Kim KJ, Yankaskas JR, and Forman HJ. Am J Physiol Lung Cell Mol Physiol 277: L113-L118, 1999). The present study examined the question of whether restoration of chloride transport would also restore glutathione secretion. We found that a Cl- channel-forming peptide (N-K4-M2GlyR) and a K+ channel activator (chlorzoxazone) increased Cl- secretion, measured as bumetanide-sensitive short-circuit current, and glutathione efflux, measured by high-performance liquid chromatography, in a human CF airway epithelial cell line (CFT1). Addition of the peptide alone increased glutathione secretion (181 +/- 8% of the control value), whereas chlorzoxazone alone did not significantly affect glutathione efflux; however, chlorzoxazone potentiated the effect of the peptide on glutathione release (359 +/- 16% of the control value). These studies demonstrate that glutathione efflux is associated with apical chloride secretion, not with the CF transmembrane conductance regulator per se, and the defect of glutathione efflux in CF can be overcome pharmacologically.
机译:囊性纤维化(CF)是一种遗传性疾病,其特征在于上皮Cl转运缺陷,通过慢性炎症和氧化应激损害肺。谷胱甘肽是上皮肺衬液中的主要抗氧化剂,由于谷胱甘肽外排减少而导致CF气道上皮的顶液中的谷胱甘肽减少(Gao L,Kim KJ,Yankaskas JR和FormanHJ。AmJ Physiol肺细胞Mol Physiol 277: L113-L118,1999)。本研究检查了恢复氯化物转运是否还会恢复谷胱甘肽分泌的问题。我们发现,以高效液相色谱法测量的布美他尼敏感短路电流和谷胱甘肽外排量,可形成Cl通道形成肽(N-K4-M2GlyR)和K +通道活化剂(氯唑沙宗)可增加Cl分泌。层析,在人CF气道上皮细胞系(CFT1)中进行单独添加肽可增加谷胱甘肽的分泌(对照值的181 +/- 8%),而单独使用氯唑沙宗则不会显着影响谷胱甘肽的外排。但是,氯唑沙宗增强了该肽对谷胱甘肽释放的影响(为对照值的359 +/- 16%)。这些研究表明,谷胱甘肽外排与顶端氯离子的分泌有关,而与CF跨膜电导调节剂本身无关,并且CF上谷胱甘肽外排的缺陷可以通过药理学克服。

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