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首页> 外文期刊>Experimental Physiology >Magnesium attenuates endothelin‐1‐induced vasoreactivity and enhances vasodilatation in mouse pulmonary arteries: Modulation by chronic hypoxic pulmonary hypertension
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Magnesium attenuates endothelin‐1‐induced vasoreactivity and enhances vasodilatation in mouse pulmonary arteries: Modulation by chronic hypoxic pulmonary hypertension

机译:镁衰减内皮素-1-诱导的激烈血管反应性,并增强小鼠肺动脉中的血管扩张:慢性缺氧肺动脉高压调节

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New Findings What is the central question of this study? The central goal of this study was to elucidate the role of magnesium in the regulation of pulmonary vascular reactivity in relationship to hypoxic pulmonary hypertension. What is the main finding and its importance? We found that magnesium is essential for normal vasoreactivity of the pulmonary artery. Increasing the magnesium concentration attenuates vasoconstriction and improves vasodilatation via release of nitric oxide. Pulmonary hypertension is associated with endothelial dysfunction resulting in the suppression of magnesium modulation of vasodilatation. These results provide evidence that magnesium is important for the modulation of pulmonary vascular function. Abstract Pulmonary hypertension (PH) is characterized by enhanced vasoreactivity and sustained pulmonary vasoconstriction, arising from aberrant Ca 2+ homeostasis in pulmonary arterial (PA) smooth muscle cells. In addition to Ca 2+ , magnesium, the most abundant intracellular divalent cation, also plays crucial roles in many cellular processes that regulate cardiovascular function. Recent findings suggest that magnesium regulates vascular functions by altering the vascular responses to vasodilator and vasoactive agonists and affects endothelial function by modulating endothelium‐dependent vasodilatation in hypertension. Administration of magnesium also decreased pulmonary arterial pressure and improved cardiac output in animal models of PH. However, the role of magnesium in the regulation of pulmonary vascular function related to PH has not been studied. In this study, we examined the effects of magnesium on endothelin‐1 (ET‐1)‐induced vasoconstriction, ACh‐induced vasodilatation and the generation of NO in PAs of normoxic mice and chronic hypoxia (CH)‐treated mice. Our data showed that removal of extracellular magnesium suppressed vasoreactivity of PAs to both ET‐1 and ACh. A high concentration of magnesium (4.8?m m ) inhibited ET‐1‐induced vasoconstriction in endothelium‐intact or endothelium‐disrupted PAs of normoxic and CH‐treated mice, and enhanced the ACh‐induced production of NO in PAs of normoxic mice. Moreover, magnesium enhanced ACh‐induced vasodilatation in PAs of normoxic mice, and the enhancement was completely abolished after exposure to CH. Hence, in this study we demonstrated that increasing the magnesium concentration can attenuate the ET‐1‐induced contractile response and improve vasodilatation via release of NO from the endothelium. We also demonstrated that chronic exposure to hypoxia can cause endothelial dysfunction resulting in suppression of the magnesium‐dependent modulation of vasodilatation.
机译:新发现这项研究的核心问题是什么?本研究的核心目标是阐明镁在与缺氧肺动脉高压关系中肺血管反应性调节中的作用。主要发现和重要性是什么?我们发现镁对肺动脉正常激光率至关重要。增加镁浓度衰减血管收缩并通过释放一氧化氮来改善血管舒张。肺动脉高压与内皮功能障碍有关,导致抑制血管扩张镁调节。这些结果提供了镁对肺血管功能的调节至关重要。摘要肺动脉高压(pH)的特征在于增强的血管反应性和持续的肺血管收缩,从肺动脉(PA)平滑肌细胞中的异常Ca 2+稳态引起。除了Ca 2+,镁,最丰富的细胞内二价阳离子外,还在调节心血管功能的许多细胞过程中起着至关重要的作用。最近的发现表明,通过改变血管扩张剂和血管加速激动剂的血管反应来调节血管功能,并通过调节高血压中的内皮依赖性血管舒张来影响内皮功能。镁的施用也降低了pH的动物模型中的肺动脉压力和改善的心脏输出。然而,镁在与pH相关的肺血管功能调节中的作用尚未研究。在这项研究中,我们研究了镁对内皮素-1(ET-1)诱导的血管收缩,ACH诱导的血管舒张和NOM常氧小鼠和慢性缺氧(CH) - 治疗小鼠的血管型血管大小的影响。我们的数据表明,去除细胞外镁抑制了PA的血管反应性,均为ET-1和ACH。高浓度的镁(4.8μmm)抑制了常氧和Ch处理小鼠的内皮完整或内皮破碎的血管收集的ET-1诱导的血管收缩,并增强了常氧小鼠的PAS中的ACH诱导的NO生产。此外,在常氧小鼠的PAS中增强了血管诱导的血管扩张,并且在暴露于CH后完全废除增强。因此,在该研究中,我们证明,增加镁浓度可以通过释放NO从内皮释放来衰减ET-1诱导的收缩响应并改善血管舒张。我们还表明,慢性暴露于缺氧可能导致内皮功能障碍导致抑制血管扩张的镁依赖性调节。

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