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首页> 外文期刊>Antioxidants and redox signalling >Does NADPH oxidase deficiency cause artery dilatation in humans?
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Does NADPH oxidase deficiency cause artery dilatation in humans?

机译:NADPH氧化酶缺乏会引起人类动脉扩张吗?

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NADPH oxidase is known to modulate the arterial tone, but the role of its specific subunits is still unclear. The objective of this study was to compare the role of p47 and gp91phox (NOX2) on artery dilatation. We conducted a multicenter study enrolling 30 patients with chronic granulomatous disease (CGD) (25 with NOX2 deficiency and 5 with p47phox deficiency) and 30 healthy subjects (HS), matched for gender and age, in whom flow-mediated dilation (FMD), serum activity of NOX2 (soluble NOX2-derived peptide [sNOX2-dp]), urinary isoprostanes (8-iso-PGF2??), and platelet production of isoprostanes and NOX2 were determined. Compared to HS, patients with CGD had significantly higher FMD and lower sNOX2-dp and 8-iso-PGF2?? levels. Compared to patients with NOX2 deficiency and HS, patients with p47 phox hereditary deficiency had intermediate FMD and oxidative stress, that is, higher and lower FMD and lower and higher isoprostanes compared to HS and patients with NOX2 deficiency, respectively. In agreement with this finding, an ex vivo study showed higher inhibition of NOX2 activity and lower isoprostane formation in platelets from patients with NOX2 deficiency compared to platelets from ones with p47phox deficiency. Our observations lead to the hypothesis that oxidants are implicated in artery vasoconstriction. Antioxid. Redox Signal. 18, 1491-1496. ?
机译:已知NADPH氧化酶可调节动脉张力,但其特定亚基的作用仍不清楚。这项研究的目的是比较p47和gp91phox(NOX2)在动脉扩张中的作用。我们进行了一项多中心研究,招募了30例慢性肉芽肿病(CGD)患者(25例NOX2缺乏症和5例p47phox缺乏症)和30例健康受试者(HS),按性别和年龄进行了匹配,他们采用血流介导的扩张(FMD),测定了NOX2(可溶性NOX2衍生肽[sNOX2-dp])的血清活性,尿中异前列腺素(8-iso-PGF2β)以及异前列腺素和NOX2的血小板生成。与HS相比,CGD患者的FMD明显升高,sNOX2-dp和8-iso-PGF2β降低。水平。与NOX2缺乏症和HS患者相比,p47 phox遗传性缺乏症患者具有中等FMD和氧化应激,即与HS和NOX2缺乏症患者相比,FMD较高和较低,FMD较低和较高。与这一发现相一致的是,一项离体研究显示,与患有p47phox缺乏症的患者的血小板相比,患有NOX2缺乏症的患者的血小板对NOX2活性具有更高的抑制作用,并降低了异前列腺素的形成。我们的观察结果得出这样的假设,即氧化剂与动脉血管收缩有关。抗氧化。氧化还原信号。 18,1491-1496。 ?

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