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Bone morphogenetic protein receptor II is a novel mediator of endothelial nitric-oxide synthase activation.骨形态发生蛋白受体 II 是内皮型一氧化氮合酶激活的新型介质。
J Biol Chem. 2011 Sep 23;286(38):33134-40. doi: 10.1074/jbc.M111.274100. Epub 2011 Aug 1.
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Suppression of eNOS-derived superoxide by caveolin-1: a biopterin-dependent mechanism.血管内皮型一氧化氮合酶来源的超氧阴离子被窖蛋白-1抑制:一种依赖生物喋呤的机制。
Am J Physiol Heart Circ Physiol. 2011 Sep;301(3):H903-11. doi: 10.1152/ajpheart.00936.2010. Epub 2011 Jul 1.
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Hemodynamic predictors of survival in scleroderma-related pulmonary arterial hypertension.硬皮病相关肺动脉高压患者生存的血流动力学预测因子。
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Caveolae, caveolins, and cavins: complex control of cellular signalling and inflammation.陷窝、陷窝蛋白和陷窝相关蛋白:细胞信号和炎症的复杂调控。
Cardiovasc Res. 2010 May 1;86(2):219-25. doi: 10.1093/cvr/cvq075. Epub 2010 Mar 3.
5
Nitrite potently inhibits hypoxic and inflammatory pulmonary arterial hypertension and smooth muscle proliferation via xanthine oxidoreductase-dependent nitric oxide generation.亚硝酸盐通过黄嘌呤氧化还原酶依赖的一氧化氮生成有力地抑制缺氧性和炎症性肺动脉高血压和平滑肌增殖。
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HO-1 and CO decrease platelet-derived growth factor-induced vascular smooth muscle cell migration via inhibition of Nox1.血红素加氧酶-1 和一氧化碳通过抑制 Nox1 减少血小板衍生生长因子诱导的血管平滑肌细胞迁移。
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PDE5A inhibitor treatment of persistent pulmonary hypertension after mechanical circulatory support.磷酸二酯酶5A抑制剂治疗机械循环支持后持续性肺动脉高压
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Disproportionate elevation of N-terminal pro-brain natriuretic peptide in scleroderma-related pulmonary hypertension.硬皮病相关肺动脉高压患者中 N 端脑利钠肽前体的不成比例升高。
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Persistent eNOS activation secondary to caveolin-1 deficiency induces pulmonary hypertension in mice and humans through PKG nitration.小窝蛋白-1缺乏继发的持续性内皮型一氧化氮合酶激活通过蛋白激酶G硝化作用在小鼠和人类中诱发肺动脉高压。
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慢性缺氧可诱导窖蛋白-1 基因敲除小鼠发生右心衰竭。

Chronic hypoxia induces right heart failure in caveolin-1-/- mice.

机构信息

Department of Surgery, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2012 Jun 15;302(12):H2518-27. doi: 10.1152/ajpheart.01140.2011. Epub 2012 Apr 13.

DOI:10.1152/ajpheart.01140.2011
PMID:22505641
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3378264/
Abstract

Caveolin-1 (Cav-1)-/- mice develop mild pulmonary hypertension as they age. In this study, we sought to determine the effect of chronic hypoxia, an established model of pulmonary hypertension, on young Cav-1-/- mice with no measurable signs of pulmonary hypertension. Exposure of Cav-1-/- mice to chronic hypoxia resulted in an initial rise in right ventricular (RV) systolic pressure (RVSP) similar to wild-type (WT) mice. By three weeks RVSP decreased in the Cav-1-/- mice, whereas it was maintained in WT mice. The drop in RVSP in Cav-1-/- mice was accompanied by decreased cardiac output, increased RV hypertrophy, RV interstitial fibrosis, decreased RV sarco(endo)plasmic reticulum Ca(2+)-ATPase 2a mRNA and decreased RV function compared with WT mice. Importantly, minimal differences were noted in pulmonary vascular remodeling between WT and Cav-1-/- mice, and left ventricular function was normal in hypoxic Cav-1-/- mice. Mechanistically, increased endothelial nitric oxide synthase uncoupling and increased tyrosine nitration of protein kinase G were detected in the RV of Cav-1-/- mice. These hemodynamic, histological, and molecular changes were prevented in Cav-1-/- mice expressing an endothelial-specific Cav-1 transgene or by nitric oxide synthase inhibition. These data suggest that, in Cav-1-/- mice, increased oxidative/nitrosative stress due to endothelial nitric oxide synthase uncoupling modifies the response of the RV to pressure overload, accelerating the deterioration of RV function.

摘要

窖蛋白-1(Cav-1)敲除小鼠随着年龄的增长会发展为轻度肺动脉高压。在这项研究中,我们试图确定慢性低氧(肺动脉高压的一种既定模型)对年轻的、没有可测量的肺动脉高压迹象的 Cav-1 敲除小鼠的影响。Cav-1 敲除小鼠暴露于慢性低氧中会导致右心室(RV)收缩压(RVSP)的初始升高,与野生型(WT)小鼠相似。但在三周时,Cav-1 敲除小鼠的 RVSP 下降,而 WT 小鼠的 RVSP 则保持不变。Cav-1 敲除小鼠 RVSP 的下降伴随着心输出量减少、RV 肥大增加、RV 间质纤维化、RV 肌浆网(内质网)Ca2+-ATPase 2a mRNA 减少以及 RV 功能下降,与 WT 小鼠相比。重要的是,WT 和 Cav-1 敲除小鼠之间的肺血管重塑差异很小,并且缺氧 Cav-1 敲除小鼠的左心室功能正常。从机制上讲,在 Cav-1 敲除小鼠的 RV 中检测到内皮型一氧化氮合酶解偶联和蛋白激酶 G 的酪氨酸硝化增加。在表达内皮特异性 Cav-1 转基因的 Cav-1 敲除小鼠或通过抑制一氧化氮合酶可预防这些血流动力学、组织学和分子变化。这些数据表明,在 Cav-1 敲除小鼠中,内皮型一氧化氮合酶解偶联引起的氧化/硝化应激增加改变了 RV 对压力超负荷的反应,加速了 RV 功能的恶化。