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本文引用的文献

1
Null mutation of the nicotinamide adenine dinucleotide phosphate-oxidase subunit p67phox protects the Dahl-S rat from salt-induced reductions in medullary blood flow and glomerular filtration rate.烟酰胺腺嘌呤二核苷酸磷酸氧化酶亚基p67phox的无效突变可保护Dahl-S大鼠免受盐诱导的髓质血流量和肾小球滤过率降低的影响。
Hypertension. 2015 Mar;65(3):561-8. doi: 10.1161/HYPERTENSIONAHA.114.04468. Epub 2014 Dec 8.
2
Maternal diet during gestation and lactation modifies the severity of salt-induced hypertension and renal injury in Dahl salt-sensitive rats.妊娠期和哺乳期的母体饮食会改变盐敏感性 Dahl 大鼠盐诱导的高血压和肾损伤的严重程度。
Hypertension. 2015 Feb;65(2):447-55. doi: 10.1161/HYPERTENSIONAHA.114.04179. Epub 2014 Dec 1.
3
Reactive oxygen species as important determinants of medullary flow, sodium excretion, and hypertension.活性氧作为影响髓质血流、钠排泄和高血压的重要决定因素。
Am J Physiol Renal Physiol. 2015 Feb 1;308(3):F179-97. doi: 10.1152/ajprenal.00455.2014. Epub 2014 Oct 29.
4
Integrated control of Na transport along the nephron.沿肾单位对钠转运的综合调控。
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5
Ultrastructure of mitochondria and the endoplasmic reticulum in renal tubules of Dahl salt-sensitive rats.Dahl 盐敏感大鼠肾小管中线粒体和内质网的超微结构。
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6
Genetic targeting or pharmacologic inhibition of NADPH oxidase nox4 provides renoprotection in long-term diabetic nephropathy.遗传靶向或药理学抑制 NADPH 氧化酶 nox4 可提供长期糖尿病肾病的肾脏保护。
J Am Soc Nephrol. 2014 Jun;25(6):1237-54. doi: 10.1681/ASN.2013070810. Epub 2014 Feb 7.
7
Identifying multiple causative genes at a single GWAS locus.在单个 GWAS 位点识别多个致病基因。
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8
Female-specific hypertension loci on rat chromosome 13.大鼠染色体 13 上的女性特异性高血压基因座。
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9
Organ specific optical imaging of mitochondrial redox state in a rodent model of hereditary hemorrhagic telangiectasia-1.遗传性出血性毛细血管扩张症-1啮齿动物模型中线粒体氧化还原状态的器官特异性光学成像。
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10
Salt in health and disease--a delicate balance.健康与疾病中的盐分——微妙的平衡。
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p67phox对 Dahl 盐敏感大鼠肾脏线粒体氧化状态的影响:光学荧光三维冷冻成像

Effects of p67phox on the mitochondrial oxidative state in the kidney of Dahl salt-sensitive rats: optical fluorescence 3-D cryoimaging.

作者信息

Salehpour F, Ghanian Z, Yang C, Zheleznova N N, Kurth T, Dash R K, Cowley A W, Ranji M

机构信息

Biophotonics Lab, University of Wisconsin, Milwaukee, Wisconsin; and.

Department of Physiology, Medical College of Wisconsin, Milwaukee, Wisconsin.

出版信息

Am J Physiol Renal Physiol. 2015 Aug 15;309(4):F377-82. doi: 10.1152/ajprenal.00098.2015. Epub 2015 Jun 10.

DOI:10.1152/ajprenal.00098.2015
PMID:26062875
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4596732/
Abstract

The goal of the present study was to quantify and correlate the contribution of the cytosolic p67(phox) subunit of NADPH oxidase 2 to mitochondrial oxidative stress in the kidneys of the Dahl salt-sensitive (SS) hypertensive rat. Whole kidney redox states were uniquely assessed using a custom-designed optical fluorescence three-dimensional cryoimager to acquire multichannel signals of the intrinsic fluorophores NADH and FAD. SS rats were compared with SS rats in which the cytosolic subunit p67(phox) was rendered functionally inactive by zinc finger nuclease mutation of the gene (SS(p67phox)-null rats). Kidneys of SS rats fed a 0.4% NaCl diet exhibited significantly (P = 0.023) lower tissue redox ratio (NADH/FAD; 1.42 ± 0.06, n = 5) than SS(p67phox)-null rats (1.64 ± 0.07, n = 5), indicating reduced levels of mitochondrial electron transport chain metabolic activity and enhanced oxidative stress in SS rats. When fed a 4.0% salt diet for 21 days, both strains exhibited significantly lower tissue redox ratios (P < 0.001; SS rats: 1.03 ± 0.05, n = 9, vs. SS(p67phox)-null rats: 1.46 ± 0.04, n = 7) than when fed a 0.4% salt, but the ratio was still significantly higher in SS(p67phox) rats at the same salt level as SS rats. These results are consistent with results from previous studies that found elevated medullary interstitial fluid concentrations of superoxide and H2O2 in the medulla of SS rats. We conclude that the p67(phox) subunit of NADPH oxidase 2 plays an important role in the excess production of ROS from mitochondria in the renal medulla of the SS rat.

摘要

本研究的目的是量化并关联NADPH氧化酶2的胞质p67(phox)亚基对Dahl盐敏感(SS)高血压大鼠肾脏线粒体氧化应激的贡献。使用定制设计的光学荧光三维冷冻成像仪独特地评估全肾氧化还原状态,以获取内源性荧光团NADH和FAD的多通道信号。将SS大鼠与通过基因的锌指核酸酶突变使胞质亚基p67(phox)功能失活的SS大鼠(SS(p67phox)基因敲除大鼠)进行比较。喂食0.4% NaCl饮食的SS大鼠的组织氧化还原比(NADH/FAD;1.42±0.06,n = 5)显著低于(P = 0.023)SS(p67phox)基因敲除大鼠(1.64±0.07,n = 5),表明SS大鼠线粒体电子传递链代谢活性水平降低,氧化应激增强。当喂食4.0%盐饮食21天时,两种品系的组织氧化还原比均显著低于(P < 0.001;SS大鼠:1.03±0.05,n = 9,对比SS(p67phox)基因敲除大鼠:1.46±0.04,n = 7)喂食0.4%盐时,但在与SS大鼠相同盐水平下,SS(p67phox)大鼠的该比值仍显著高于SS大鼠。这些结果与先前研究结果一致,先前研究发现SS大鼠髓质中超氧化物和H2O2的髓质间质液浓度升高。我们得出结论,NADPH氧化酶2的p67(phox)亚基在SS大鼠肾髓质线粒体ROS的过量产生中起重要作用。