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血压对慢性间歇性缺氧的反应:交感神经系统的作用。

Blood pressure response to chronic episodic hypoxia: role of the sympathetic nervous system.

作者信息

Bao G, Metreveli N, Li R, Taylor A, Fletcher E C

机构信息

Department of Medicine, Louisville Veterans Affairs Medical Center Louisville, Kentucky 40292, USA.

出版信息

J Appl Physiol (1985). 1997 Jul;83(1):95-101. doi: 10.1152/jappl.1997.83.1.95.

Abstract

Previous studies in several strains of rats have demonstrated that 35 consecutive days of recurrent episodic hypoxia (7 h/day) cause an 8- to 13-mmHg persistent increase in diurnal systemic blood pressure (BP). Carotid chemoreceptors and the sympathetic nervous system have been shown to be necessary for development of this BP increase. The present study was undertaken to further define the role of renal artery sympathetic nerves and the adrenal medulla in this BP increase. Male Sprague-Dawley rats had either adrenal medullectomy, bilateral renal artery denervation, or sham surgery. Rats from each of these groups were subjected to episodic hypoxia for 35 days. Control groups received either compressed air or were left unhandled. Adrenal demedullation or renal artery denervation eliminated the chronic diurnal mean BP response (measured intra-arterially) to episodic hypoxia, whereas sham-operated controls continued to showed persistent elevation of systemic BP. Plasma and renal tissue catecholamine levels at the end of the experiment confirmed successful adrenal demedullation or renal denervation in the respective animals. The chronic episodic hypoxia-mediated increase in diurnal BP requires both intact renal artery nerves as well as an intact adrenal medulla.

摘要

先前在多个品系大鼠中开展的研究表明,连续35天反复间歇性缺氧(每天7小时)会导致日间全身血压(BP)持续升高8至13 mmHg。颈动脉化学感受器和交感神经系统已被证明是这种血压升高发展所必需的。本研究旨在进一步明确肾动脉交感神经和肾上腺髓质在这种血压升高过程中的作用。雄性Sprague-Dawley大鼠接受了肾上腺髓质切除术、双侧肾动脉去神经支配术或假手术。这些组中的每一组大鼠都经历了35天的间歇性缺氧。对照组接受压缩空气或不做处理。肾上腺髓质切除或肾动脉去神经支配消除了(通过动脉内测量)对间歇性缺氧的慢性日间平均血压反应,而假手术对照组的全身血压持续升高。实验结束时血浆和肾组织中的儿茶酚胺水平证实了相应动物肾上腺髓质切除或肾去神经支配成功。慢性间歇性缺氧介导的日间血压升高既需要完整的肾动脉神经,也需要完整的肾上腺髓质。

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