首页> 美国卫生研究院文献>American Journal of Physiology - Renal Physiology >Enhanced expression and activity of Nox2 and Nox4 in the macula densa in ANG II-induced hypertensive mice
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Enhanced expression and activity of Nox2 and Nox4 in the macula densa in ANG II-induced hypertensive mice

机译:ANG II引起的高血压小鼠黄斑区Nox2和Nox4的表达增强和活性

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摘要

NAD(P)H oxidase (Nox)2 and Nox4 are the isoforms of Nox expressed in the macula densa (MD). MD-derived superoxide (O2), primarily generated by Nox2, is enhanced by acute ANG II stimulation. However, the effects of chronic elevations in ANG II during ANG II-induced hypertension on MD-derived O2 are unknown. We infused a slow pressor dose of ANG II (600 ng·min−1·kg−1) for 2 wk in C57BL/6 mice and found that mean arterial pressure was elevated by 22.3 ± 3.4 mmHg (P < 0.01). We measured O2 generation in isolated and perfused MDs and found that O2 generation by the MD was increased from 9.4 ± 0.9 U/min in control mice to 34.7 ± 1.8 U/min in ANG II-induced hypertensive mice (P < 0.01). We stimulated MMDD1 cells, a MD-like cell line, with ANG II and found that O2 generation increased from 921 ± 91 to 3,687 ± 183 U·min−1·105 cells−1, which was inhibited with apocynin, oxypurinol, or NS-398 by 46%, 14%, and 12%, respectively. We isolated MD cells using laser capture microdissection and measured mRNA levels of Nox. Nox2 and Nox4 levels increased by 3.7 ± 0.17- and 2.6 ± 0.15-fold in ANG II-infused mice compared with control mice. In MMDD1 cells treated with Nox2 or Nox4 small interfering (si)RNAs, ANG II-stimulated O2 generation was blunted by 50% and 41%, respectively. In cells treated with p22phox siRNA, ANG II-stimulated O2 generation was completely blocked. In conclusion, we found that a subpressor dose of ANG II enhances O2 generation in the MD and that the sources of this O2 are primarily Nox2 and Nox4.
机译:NAD(P)H氧化酶(Nox)2和Nox4是在黄斑部(MD)中表达的Nox的同工型。急性ANG II刺激可增强主要由Nox2产生的MD衍生的超氧化物(O2 -)。然而,在ANG II诱导的高血压期间,ANG II的慢性升高对MD衍生的O2 -的影响尚不清楚。我们在C57BL / 6小鼠中注入了2 wk的ANG II缓慢升压剂量(600 ng·min -1 ·kg -1 ),发现平均动脉压为升高22.3±3.4 mmHg(P <0.01)。我们测量了离体和灌注MD的O2 -生成,发现MD的O2 -生成从对照小鼠的9.4±0.9 U / min增加到34.7±1.8 U / min在ANG II诱导的高血压小鼠中(P <0.01)。我们用ANG II刺激了MDDD细胞,即MMDD1细胞,发现O2 -的生成从921±91增加到3,687±183 U·min -1 · 10 5 细胞 -1 ,其被阿朴西宁,羟嘌呤醇或NS-398抑制分别为46%,14%和12%。我们使用激光捕获显微切割术分离了MD细胞,并测量了Nox的mRNA水平。与对照小鼠相比,在注射ANG II的小鼠中,Nox2和Nox4水平增加了3.7±0.17-倍和2.6±0.15-倍。在用Nox2或Nox4小干扰(si)RNA处理的MMDD1细胞中,ANG II刺激的O2 -产生分别减少了50%和41%。在用p22 phox siRNA处理的细胞中,ANG II刺激的O2 -生成被完全阻断。总之,我们发现ANGII的降压剂量可增强MD中O2 -的生成,并且该O2 -的来源主要是Nox2和Nox4。

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