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Water and Electrolyte Homeostasis Section: Proton channels and renal hypertensive injury: a key piece of the Dahl salt-sensitive rat puzzle?

机译:水和电解质体内平衡部分:质子通道和肾性高血压损伤:达尔盐敏感性大鼠难题的关键部分?

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摘要

Hv1 is a voltage-gated proton channel highly expressed in phagocytic cells, where it participates in the NADPH oxidase-dependent respiratory burst. We have recently identified Hv1 as a novel renal channel, expressed in the renal medullary thick ascending limb that appears to importantly contribute to the pathogenesis of renal hypertensive injury in the Dahl salt-sensitive rat model. The purpose of this review is to describe the experimental approaches that we have undertaken to identify the source of excess reactive oxygen species production in the renal outer medulla of Dahl salt-sensitive rats and the resulting evidence that the voltage-gated proton channel Hv1 mediates augmented superoxide production and contributes to renal medullary oxidative stress and renal injury. In addition, we will attempt to point out areas of current controversy, as well as propose areas in which further experimental studies are likely to move the field forward. The content of the following review was presented as part of the Water and Electrolyte Homeostasis Section New Investigator Award talk at Experimental Biology 2014.
机译:Hv1是在吞噬细胞中高度表达的电压门控质子通道,在其中它参与NADPH氧化酶依赖性呼吸爆发。最近,我们已将Hv1鉴定为一种新型的肾脏通道,在肾脏髓质粗大上升肢中表达,这似乎对Dahl盐敏感性大鼠模型中肾性高血压损伤的发病机制起重要作用。这篇综述的目的是描述我们采取的实验方法,以确定达尔盐敏感性大鼠的肾脏外延髓中过量的活性氧产生的来源,以及由此产生的证据表明电压门控质子通道Hv1介导了增强超氧化物的产生,并有助于肾髓质氧化应激和肾损伤。此外,我们将尝试指出当前存在争议的领域,并提出可能进行进一步实验研究以推动该领域前进的领域。以下评论的内容是2014年实验生物学的水和电解质体内稳态部分新研究者奖演讲的一部分。

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