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July 1, 1997Journal of Applied Physiology205 citations

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

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GBGang BaoNMNaira MetreveliRLRena Li

Structured PICO

Does adrenal medullectomy or bilateral renal artery denervation prevent the chronic episodic hypoxia-mediated increase in diurnal blood pressure in male Sprague-Dawley rats?

P
Population
Male Sprague-Dawley rats
I
Intervention
Adrenal medullectomy or bilateral renal artery denervation, followed by episodic hypoxia for 35 days
C
Comparator
Sham surgery followed by episodic hypoxia; control groups receiving compressed air or left unhandled
O
Outcome
Chronic diurnal mean blood pressure response (measured intra-arterially)surrogate

The chronic episodic hypoxia-mediated increase in diurnal blood pressure requires both intact renal artery nerves and an intact adrenal medulla in a rat model.

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.

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Bao et al. (1997) studied this question.

synapsesocial.com/papers/6a1f0234331edacc706b5754https://doi.org/10.1152/jappl.1997.83.1.95
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