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Muscarinic Receptor Activation Affects Pulmonary Artery Contractility in Sheep: The Impact of Maturation and Chronic Hypoxia on Endothelium-Dependent and Endothelium-Independent Function

机译:肌肉蛋白受体活化会影响绵羊的肺动脉收缩性:成熟和慢性缺氧对内皮依赖性和独立内皮的影响的影响

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摘要

Muscarinic receptor activation in the pulmonary vasculature can cause endothelium-dependent vasodilation and smooth muscle-dependent vasoconstriction. Chronic hypoxia (CH) can modify both of these responses. This study aimed to assess the combined influence of CH and maturation on endothelium-dependent and endothelium-independent muscarinic-induced vasoreactivity. This was accomplished by performing wire myography on endothelium-intact or endothelium-disrupted pulmonary arterial rings isolated from normoxic or CH fetal and adult sheep. In endothelium-intact arteries, vasodilation was evaluated using cumulative bradykinin doses in phenylephrine and carbachol precontracted pulmonary arterial segments; and vasoconstriction was examined using cumulative doses of carbachol following bradykinin predilation. Effects of nonselective (atropine) and selective M1 (pirenzepine), M2 (AFDX116), and M3 (4-DAMP and Dau5884) muscarinic receptor antagonists were assessed in disrupted arteries. In normoxic arteries, bradykinin relaxation was twofold greater in the adult compared to fetus, while carbachol contraction was fourfold greater. In adult arteries, CH increased bradykinin relaxation and carbachol contraction. In vessels with intact endothelium, maturation and CH augmented maximal response and efficacy for carbachol constriction and bradykinin relaxation. Approximately 50%-80% of adult normoxic and CH endothelium-disrupted arteries contracted to acetylcholine, while similar to 50% of fetal normoxic and similar to 10% of CH arteries responded. Atropine reduced carbachol-induced contraction in all vessels. Adult normoxic vessels were most responsive to M3 antagonism, fetal to M2 antagonism, while M1 inhibition had no effect. Overall, muscarinic-induced pulmonary arterial contraction is partially endothelium dependent and appears to develop after birth. Fetuses are more reliant on M3 receptors while M2 receptors predominate in adults, whereas CH augments muscarinic-dependent pulmonary vasoconstriction in both.
机译:肺脉管系统中的肌肉蛋白受体激活可导致内皮依赖性血管舒张和平滑肌依赖性血管收缩。慢性缺氧(CH)可以修改这两个响应。本研究旨在评估CH和成熟对内皮依赖性和内皮无依赖性肌肉蛋白诱导的激光反应性的综合影响。这是通过在从常氧或Ch胎儿和成年羊分离的内皮完整或内皮破坏的肺动脉环上进行线性肌图来实现的。在内皮完整的动脉中,使用抑制的BRADYKININ剂量在苯妥和卡巴醇预诊断的肺动脉段中评估血管舒张;使用Bradykinin预测后使用累积的鱼类药物检查血管收缩。非选择性(阿托品)和选择性M1(PiRenzepine),M2(AFDX116)和M3(4-DAMP和DAU5884)的疗效在破坏的动脉中评估毒蕈碱受体拮抗剂。在常氧动脉中,与胎儿相比,在成人中,Bradykinin弛豫在成人中更大,而Carbachol收缩率大于四倍。在成人动脉中,CH增加了BRADYKININ松弛和卡巴山萎缩。在具有完整内皮的血管中,成熟和CH增加最大反应和用于卡巴冈收缩和Bradykinin弛豫的疗效。约50%-80%的成人常氧和Ch内皮破坏的动脉缩合到乙酰胆碱上,同时类似于胎儿常氧的50%,类似于Ch动脉的10%作出反应。阿托品降低了所有血管中的卡巴酚诱导的收缩。成人常氧血管最应对M3拮抗作用,胎儿到M2拮抗作用,而M1抑制无效。总体而言,肌肉蛋白诱导的肺动脉收缩是部分内皮依赖性,并且出生后似乎发生。胎儿更依赖于M3受体,而M2受体在成人中占主导地位,而Ch增强毒蕈碱依赖性肺血管收缩。

著录项

  • 来源
    《High Altitude Medicine & Biology》 |2016年第2期|122-132|共11页
  • 作者单位

    Loma Linda Univ Sch Med Ctr Perinatal Biol 11234 Anderson St Loma Linda CA 92350 USA;

    UC San Diego Hlth Syst Div Pulm & Crit Care Med San Diego CA USA;

    Univ Mississippi Sch Pharm Dept Pharmacol University MS 38677 USA;

    Loma Linda Univ Sch Med Ctr Perinatal Biol 11234 Anderson St Loma Linda CA 92350 USA|Loma Linda Univ Sch Med Ctr Hlth Dispar & Mol Med Loma Linda CA 92350 USA;

    Loma Linda Univ Sch Med Ctr Perinatal Biol 11234 Anderson St Loma Linda CA 92350 USA|Loma Linda Univ Sch Med Ctr Hlth Dispar & Mol Med Loma Linda CA 92350 USA;

    Loma Linda Univ Sch Med Ctr Perinatal Biol 11234 Anderson St Loma Linda CA 92350 USA|Loma Linda Univ Sch Med Div Pulm & Crit Care Loma Linda CA 92350 USA;

    Loma Linda Univ Sch Med Ctr Perinatal Biol 11234 Anderson St Loma Linda CA 92350 USA;

    Loma Linda Univ Sch Med Ctr Perinatal Biol 11234 Anderson St Loma Linda CA 92350 USA;

    Loma Linda Univ Sch Med Ctr Perinatal Biol 11234 Anderson St Loma Linda CA 92350 USA;

    Loma Linda Univ Sch Med Ctr Perinatal Biol 11234 Anderson St Loma Linda CA 92350 USA;

    Loma Linda Univ Sch Med Ctr Perinatal Biol 11234 Anderson St Loma Linda CA 92350 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    acetylcholine; contractility; hypoxia; maturation; muscarinic receptors;

    机译:乙酰胆碱;收缩性;缺氧;成熟;肌肉蛋白受体;

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