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May 18, 2004Journal of Applied Physiology79 citations

Autonomic control of the cardiovascular system during acclimatization to high altitude: effects of sildenafil

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JCJérémy CornoloPMPascal MollardJBJulien V. Brugniaux

Structured PICO

Does sildenafil interfere with the cardiovascular effects of hypoxia and autonomic control in healthy men exposed to high altitude?

P
Population
12 healthy men exposed to an altitude of 4,350 m during 6 days
I
Intervention
Sildenafil 40 mg three times a day (3 x 40 mg/day) continuously administered from 6 to 8 hours after arrival at altitude
C
Comparator
Placebo
O
Outcome
Autonomic control of the heart assessed by heart rate variability (HRV) during sleep, arterial pressure (AP), and total peripheral resistances (TPR)surrogate

Sildenafil does not negatively interfere with cardiovascular autonomic control or acclimatization responses during acute high-altitude exposure in healthy men.

Abstract

Both acute hypoxia and sildenafil may influence autonomic control through transient cardiovascular effects. In a double-blind study, we investigated whether sildenalfil (Sil) could interfere with cardiovascular effects of hypoxia. Twelve healthy men placebo (Pla) n = 6; Sil, n = 6 were exposed to an altitude of 4,350 m during 6 days. Treatment was continuously administered from 6 to 8 h after arrival at altitude (3 x 40 mg/day). The autonomic control on the heart was assessed by heart rate variability (HRV) during sleep at sea level (SL) and between day 1-2 and day 5-6 in hypoxia. Arterial pressure (AP) and total peripheral resistances (TPR) were obtained during daytime. There was no statistical difference between groups in HRV, AP, and TPR throughout the study. Hypoxia induced a decrease in R-R interval and an increase in AP in both groups. Low frequency-to-high frequency ratio increased at day 1-2 (Pla, P = 0.04; Sil, P = 0.02) and day 5-6 (Pla and Sil, P = 0.04) vs. SL, whereas normalized high-frequency power decreased only in Pla (P = 0.04, day 1-2 vs. SL). Normalized low-frequency power increased at high altitude (Pla and Sil, P = 0.04, day 5-6 vs. SL). TPR decreased at day 2 in Pla (P = 0.02) and tended to normalize at day 6 (P = 0.07, day 6 vs. day 2). Acute hypoxia induced a decrease in parasympathetic and increase in sympathetic tone, which tended to be reversed with acclimatization. Sil had no deleterious effects on the cardiovascular response to high-altitude exposure and its control by the autonomic nervous system.

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Cite This Study

Cornolo et al. (2004) studied this question.

synapsesocial.com/papers/69d56cd475589c71d767ce22https://doi.org/10.1152/japplphysiol.00239.2004
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