首页> 美国卫生研究院文献>American Journal of Physiology - Renal Physiology >Fulvene-5 inhibition of Nadph oxidases attenuates activation of epithelial sodium channels in A6 distal nephron cells
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Fulvene-5 inhibition of Nadph oxidases attenuates activation of epithelial sodium channels in A6 distal nephron cells

机译:Fulvene-5对Nadph氧化酶的抑制作用减弱了A6远端肾细胞中上皮钠通道的激活

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摘要

Nadph oxidase 4 is an important cellular source of reactive oxygen species (ROS) generation in the kidney. Novel antioxidant drugs, such as Nox4 inhibitor compounds, are being developed. There is, however, very little experimental evidence for the biological role and regulation of Nadph oxidase isoforms in the kidney. Herein, we show that Fulvene-5 is an effective inhibitor of Nox-generated ROS and report the role of Nox isoforms in activating epithelial sodium channels (ENaC) in A6 distal nephron cells via oxidant signaling and cell stretch activation. Using single-channel patch-clamp analysis, we report that Fulvene-5 blocked the increase in ENaC activity that is typically observed with H2O2 treatment of A6 cells: average ENaC NPo values decreased from a baseline level of 1.04 ± 0.18 (means ± SE) to 0.25 ± 0.08 following Fulvene-5 treatment. H2O2 treatment failed to increase ENaC activity in the presence of Fulvene-5. Moreover, Fulvene-5 treatment of A6 cells blocked the osmotic cell stretch response of A6 cells, indicating that stretch activation of Nox-derived ROS plays an important role in ENaC regulation. Together, these findings indicate that Fulvene-5, and perhaps other classes of antioxidant inhibitors, may represent a novel class of compounds useful for the treatment of pathological disorders stemming from inappropriate ion channel activity, such as hypertension.
机译:Nadph氧化酶4是肾脏中活性氧(ROS)生成的重要细胞来源。正在开发新型抗氧化剂药物,例如Nox4抑制剂化合物。然而,关于肾脏中纳德氧化酶同工型的生物学作用和调节的实验证据很少。在本文中,我们显示Fulvene-5是Nox生成的ROS的有效抑制剂,并报告了Nox亚型在A6远端肾细胞中通过氧化剂信号传导和细胞拉伸活化激活上皮钠通道(ENaC)的作用。使用单通道膜片钳分析,我们报告Fulvene-5阻止了H2O2处理A6细胞时通常观察到的ENaC活性的增加:平均ENaC NPo值从基线水平1.04±0.18(平均值±SE)降低在Fulvene-5处理后达到0.25±0.08。在Fulvene-5存在下,H2O2处理无法增加ENaC活性。此外,对A6细胞的Fulvene-5处理阻止了A6细胞的渗透细胞拉伸反应,表明Nox衍生的ROS的拉伸活化在ENaC调节中起重要作用。总之,这些发现表明Fulvene-5和其他类型的抗氧化剂抑制剂可能代表了一类新型的化合物,可用于治疗由不适当地的离子通道活性(例如高血压)引起的病理性疾病。

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