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Impaired myogenic constriction of the renal afferent arteriole in a mouse model of reduced βENaC expression

机译:βENaC表达降低的小鼠模型中肾小动脉的肌源性收缩受损

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摘要

Previous studies demonstrate a role for β epithelial Na+ channel (βENaC) protein as a mediator of myogenic constriction in renal interlobar arteries. However, the importance of βENaC as a mediator of myogenic constriction in renal afferent arterioles, the primary site of development of renal vascular resistance, has not been determined. We colocalized βENaC with smooth muscle α-actin in vascular smooth muscle cells in renal arterioles using immunofluorescence. To determine the importance of βENaC in myogenic constriction in renal afferent arterioles, we used a mouse model of reduced βENaC (βENaC m/m) and examined pressure-induced constrictor responses in the isolated afferent arteriole-attached glomerulus preparation. We found that, in response to a step increase in perfusion pressure from 60 to 120 mmHg, the myogenic tone increased from 4.5 ± 3.7 to 27.3 ± 5.2% in +/+ mice. In contrast, myogenic tone failed to increase with the pressure step in m/m mice (3.9 ± 0.8 to 6.9 ± 1.4%). To determine the importance of βENaC in myogenic renal blood flow (RBF) regulation, we examined the rate of change in renal vascular resistance following a step increase in perfusion pressure in volume-expanded animals. We found that, following a step increase in pressure, the rate of myogenic correction of RBF is inhibited by 75% in βENaC m/m mice. These findings demonstrate that myogenic constriction in afferent arterioles is dependent on normal expression of βENaC.
机译:先前的研究表明,β上皮细胞Na + 通道(βENaC)蛋白可作为肾小叶间动脉肌收缩的介质。然而,尚未确定βENaC作为肾传入小动脉肌收缩的介质的重要性,肾传入小动脉是肾血管阻力发展的主要部位。我们使用免疫荧光法将βENaC与平滑肌α-肌动蛋白在肾小动脉的血管平滑肌细胞中共定位。为了确定βENaC在肾传入小动脉的肌源性收缩中的重要性,我们使用了βENaC降低的小鼠模型(βENaCm / m),并在分离的与小动脉相连的肾小球制备物中检查了压力诱导的收缩反应。我们发现,响应于灌注压力从60 mmHg逐步增加到120 mmHg,在+ / +小鼠中肌成肌张力从4.5±3.7增加到27.3±5.2%。相反,在m / m小鼠中,肌原性张力未能随压力的升高而增加(3.9±0.8至6.9±1.4%)。为了确定βENaC在肌源性肾血流量(RBF)调节中的重要性,我们检查了体积扩大动物中灌注压力逐步升高后肾血管阻力的变化率。我们发现,随着压力的逐步升高,βENaCm / m小鼠的RBF的肌源性纠正率被抑制了75%。这些发现证明传入小动脉的肌源性收缩取决于βENaC的正常表达。

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