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Exhaled nitric oxide decreases upon acute exposure to high-altitude hypoxia

โœ Scribed by Daniel E. Brown; Cynthia M. Beall; Kingman P. Strohl; Phoebe S. Mills


Book ID
101435968
Publisher
John Wiley and Sons
Year
2006
Tongue
English
Weight
135 KB
Volume
18
Category
Article
ISSN
1042-0533

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โœฆ Synopsis


Nitric oxide (NO) is a vasodilator that plays a role in blood flow and oxygen delivery. Acute hypoxia downregulates NO synthesis, a response that may exacerbate hypoxic stress by decreasing blood flow. This study was designed to test the hypotheses that pulmonary NO decreases upon acute exposure to high-altitude hypoxia and that relatively low levels of NO at altitude are associated with greater stress as reflected in more symptoms of acute mountain sickness (AMS). A sample of 47 healthy, adult, nonsmoking, sea-level residents provided measurements at sea level, at 2800 m, and at 0-, 2-, and 3-h exposure times at 4200 m altitude on Mauna Kea, Hawaii. Measurements were made of exhaled NO, oxygen saturation of hemoglobin, heart rate, and reported symptoms of AMS. The partial pressure of NO concentration in exhaled breath decreased significantly from a sea level mean of 4.2 nmHg to 3.8 nmHg at 2800 m and 3.4 nmHg at 4200 m. NO concentration in exhaled breath did not change significantly over a 3-h exposure at 4200 m and recovered to pre-exposure baseline upon return to sea level. There was no significant association between the level of NO exhaled and the number of self-reported symptoms of AMS during this brief exposure.


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