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June 11, 2014Acta Physiologica22 citations

Chronic hypoxia increases arterial blood pressure and reduces adenosine and ATP induced vasodilatation in skeletal muscle in healthy humans

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JCJosé A. L. CalbetRBRobert BoushelPRPaul Robach

Key Result

Short-term residence at high altitude increased mean arterial blood pressure (102 vs 91 mmHg, P<0.05) and reduced vasodilatory responses to adenosine and ATP.

Study Design

Type

Observational (n=10)

Structured PICO

Does chronic hypoxia alter arterial blood pressure and vasodilatory responses to adenosine and ATP in healthy men?

P
Population
10 healthy men assessed for vascular conductance and blood pressure at sea level and after 8-12 days of residence at 4559 m above sea level.
E
Exposure
Infusion of low and high doses of adenosine and ATP into the femoral artery after 8-12 days of residence at 4559 m above sea level (chronic hypoxia)
C
Comparator
Infusion of the same vasodilators at sea level
O
Outcome
Vascular conductance response to adenosine and ATPsurrogate

Short-term residence at high altitude increases arterial blood pressure and blunts vasodilatory responses to adenosine and ATP in healthy men.

Main Result

Absolute Event Rate: 102% vs 91%

p-value: p=< 0.05

Abstract

AIMS: To determine the role played by adenosine, ATP and chemoreflex activation on the regulation of vascular conductance in chronic hypoxia. METHODS: The vascular conductance response to low and high doses of adenosine and ATP was assessed in ten healthy men. Vasodilators were infused into the femoral artery at sea level and then after 8-12 days of residence at 4559 m above sea level. At sea level, the infusions were carried out while the subjects breathed room air, acute hypoxia (FI O2 = 0.11) and hyperoxia (FI O2 = 1); and at altitude (FI O2 = 0.21 and 1). Skeletal muscle P2Y2 receptor protein expression was determined in muscle biopsies after 4 weeks at 3454 m by Western blot. RESULTS: At altitude, mean arterial blood pressure was 13% higher (91 ± 2 vs. 102 ± 3 mmHg, P < 0.05) than at sea level and was unaltered by hyperoxic breathing. Baseline leg vascular conductance was 25% lower at altitude than at sea level (P < 0.05). At altitude, the high doses of adenosine and ATP reduced mean arterial blood pressure by 9-12%, independently of FI O2 . The change in vascular conductance in response to ATP was lower at altitude than at sea level by 24 and 38%, during the low and high ATP doses respectively (P < 0.05), and by 22% during the infusion with high adenosine doses. Hyperoxic breathing did not modify the response to vasodilators at sea level or at altitude. P2Y2 receptor expression remained unchanged with altitude residence. CONCLUSIONS: Short-term residence at altitude increases arterial blood pressure and reduces the vasodilatory responses to adenosine and ATP.

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Cite This Study

Calbet et al. (2014) conducted an observational in Healthy (n=10). Chronic hypoxia (high altitude residence) vs. Sea level was evaluated on Mean arterial blood pressure (p=< 0.05). Short-term residence at high altitude increased mean arterial blood pressure (102 vs 91 mmHg, P<0.05) and reduced vasodilatory responses to adenosine and ATP.

synapsesocial.com/papers/6a6c132fc068f641bcf43790https://doi.org/10.1111/apha.12325
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