首页> 外文期刊>Prostaglandins, Leukotrienes, and Essential Fatty Acids >Hypoxic pulmonary vasoconstriction in pigs: role of endothelin-1, prostanoids and ATP-dependent potassium channels.
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Hypoxic pulmonary vasoconstriction in pigs: role of endothelin-1, prostanoids and ATP-dependent potassium channels.

机译:猪缺氧性肺血管收缩:内皮素-1,前列腺素和ATP依赖性钾通道的作用。

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This study investigated the mechanisms that may contribute to the hypoxic pulmonary vasoconstriction and compared the effects of hypoxia on pulmonary and systemic vascular beds. Six anesthetized spontaneously breathing pigs inhaled a hypoxic mixture (10% O2 in air) in control conditions and after pre-treatment with Indomethacin (3 mg kg(-1) i.v.) to block the cyclooxygenase pathway. During hypoxia, the Indomethacin pre-treated pigs were given Cromakalim (80 microg kg(-1) i.v.) to activate K+(ATP) channels. Bosentan (5 mg kg(-1) i.v.) was administered to block endothelin-1 receptors and then during hypoxia Cromakalim was administered as before. In all experimental conditions we recorded breathing pattern and vascular parameters: mean systemic and pulmonary arterial pressures; systemic and pulmonary vascular resistances; cardiac output; and heart rate. Vascular and respiratory responses to hypoxia were determined when PaO2 was reduced to 50 +/- 5 mmHg. The main finding was that in spontaneously breathing pigs, hypoxia induces pulmonary vasoconstriction and an increase in mean systemic arterial pressure, which are cyclooxygenase-independent. A role of endothelin-1 appears in both vascular districts, but pulmonary vasoconstriction may also be due to ET-1-dependent inhibition of K+(ATP) channels.
机译:这项研究调查了可能导致缺氧性肺血管收缩的机制,并比较了缺氧对肺血管和全身血管床的影响。六只麻醉的自发呼吸猪在对照条件下以及用消炎痛(3 mg kg(-1)i.v.)预处理以阻断环氧合酶途径后,吸入低氧混合物(空气中O2含量为10%)。在缺氧期间,对消炎痛预处理的猪给予克罗卡林(80 microg kg(-1)i.v.)激活K +(ATP)通道。给予波生坦(5 mg kg(-1)i.v.)以阻断内皮素1受体,然后在缺氧期间像以前一样给予克罗卡林。在所有实验条件下,我们记录呼吸模式和血管参数:平均全身和肺动脉压;全身和肺血管阻力;心输出量和心率。当PaO2降至50 +/- 5 mmHg时,确定了对缺氧的血管和呼吸反应。主要发现是,在自发呼吸的猪中,低氧引起肺血管收缩和平均全身动脉压升高,这是不依赖环氧化酶的。内皮素-1的作用在两个血管区域均出现,但肺血管收缩也可能是由于依赖ET-1的K +(ATP)通道受到抑制。

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