National Center for Cardiology and Internal Medicine
Bishkek, 720040, Kyrgyzstan
Location status: Recruiting
NCT Number: NCT07118462
Each year, millions of people living at low altitude (< 1,000 m) travel to high altitude (≥ 2,500 m) for work, tourism, or sports activities. These individuals are exposed to hypobaric hypoxia, which can trigger acute mountain sickness (AMS)-the most common form of altitude-related illness. Therefore, understanding the physiological responses to hypoxia that allow acclimatization, as well as the pathophysiology of acute mountain sickness, is of primary importance.
The hematological response to high-altitude exposure initially includes a reduction in plasma volume (PV), leading to an early increase in hemoglobin concentration within the first 24 hours. In contrast, an increase in hemoglobin mass requires several weeks at high altitude. Recent well-controlled physiological studies conducted in hypobaric chambers have demonstrated that this hypoxia-induced PV contraction results from fluid redistribution from the intravascular to the extravascular compartment, rather than from water loss due to increased diuresis.
Prophylaxis of AMS is primarily based on the administration of 250 mg/day of acetazolamide (ACZ), a carbonic anhydrase inhibitor with a mild diuretic effect. Acetazolamide induces metabolic acidosis, which stimulates ventilation and thereby improves oxygenation. The effect of prophylactic ACZ use during high-altitude exposure on PV in lowlanders remains unknown: it is unclear whether ACZ leads to a greater reduction in PV due to its diuretic effect, or to a smaller hypoxia-induced PV contraction as a result of improved oxygenation induced by increased ventilation.
Interested in participating?
Request Info18 year–44 year
All sexes
Interventional
Phase 4
Bishkek, 720040, Kyrgyzstan
Location status: Recruiting
Not provided
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Administration of 1x125mg acetazolamide in the morning, 1x125mg in the evening, starting 24 hours before departure to 3600 m.
Other names: Diamox®
Administration of equally looking placebo capsules in the morning and in the evening, starting 24 hours before departure to 3600 m.
Time frame: Day 1 at 760 m then Day 2 and Day 3 at 3,600 m.
Change in plasma volume assessed by the CO-rebreathing method in acetazolamide versus placebo group
Time frame: Day 1 at 760 m then Day 2 and Day 3 at 3600 m.
Sex-related differences in the effect of acetazolamide vs.placebo in plasma volume at high altitude.
Time frame: Day 1 at 760 m then Day 2 and Day 3 at 3600 m.
Difference in plasma volume change at high altitude between AMS+ and AMS- participants.
Time frame: Day 2 at 760 m and Day 2 at 3600 m.
Changes in copeptin and midregional proANP serum levels between acetazolamide and placebo group and sex-related difference
Time frame: Day 2 at 760 m and Day 2 at 3600 m.
Changes in the arterial blood gases (pH, PaO2, PaCO2, SaO2) between acetazolamide and placebo group.
Contact information is provided by the study sponsor or research team.
Benoit Champigneulle, MD PhD
CONTACT
Paul Robach, PhD
CONTACT
Centre d'Expertise sur l'Altitude EXALT
Other
HighCycle Study: Effect of Acetazolamide on Plasma Volume During Acute Exposure to High Altitude in Women and Men
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