Effect of hypohydration on postsynaptic cutaneous vasodilation and sweating in healthy men
Tucker MA, Six A, Moyen NE, Satterfield AZ, Ganio MS
American journal of physiology. Regulatory, integrative and comparative physiology · 9 citations
How it was studied
- Design
- Randomized controlled trial (indexed by PubMed)
- Studied in
- People
- Main outcome
- Health markers and function
Who paid for it
- Funding
- Independent funding
- Unclassified
- NO FUNDING
Based on 1 listed funder(s).
Publication
- Published
- 2017-02-15 · Am J Physiol Regul Integr Comp Physiol · vol. 312 · issue 5 · pp. R637–R642
- Publisher
- American Physiological Society
- Cited
- 10 citations · more than 72% of similar papers · 0.9× the field average
- References
- 37 works
- Access
- Paywalled
- Research areas
- Thermoregulation and physiological responses · Infrared Thermography in Medicine · Climate Change and Health Impacts
- Keywords
- Sodium nitroprusside, Vasodilation, Medicine, SWEAT, Endothelium, Internal medicine, Endocrinology, Anesthesia, Nitric oxide
- MeSH
- sweat glands, skin, humans, dehydration, blood flow velocity, sweating, heat-shock response, regional blood flow, reference values, adult, male
5 authors
From US
- Matthew A. TuckerUniversity of Arkansas at Fayetteville
- Ashley SixUniversity of Arkansas at Fayetteville
- Nicole E. MoyenFitbit (United States); University of Arkansas at Fayetteville
- Alf Z. SatterfieldUniversity of Arkansas at Fayetteville
- Matthew S. Ganio · correspondingUniversity of Arkansas at Fayetteville
Abstract
Hypohydration decreases cutaneous vasodilation and sweating during heat stress, but it is unknown if these decrements are from postsynaptic (i.e., sweat gland/blood vessel) alterations. The purpose of this study was to determine if hypohydration affects postsynaptic cutaneous vasodilation and sweating responses. Twelve healthy men participated in euhydrated (EU) and hypohydrated (HY) trials, with hypohydration induced via fluid restriction and passive heat stress. Changes in cutaneous vascular conductance (CVC; %max) in response to incremental intradermal infusion of the endothelium-independent vasodilator sodium nitroprusside (SNP) and the endothelium-dependent vasodilator methacholine chloride (MCh) were assessed by laser Doppler flowmetry. Local sweat rate (LSR) was simultaneously assessed at the MCh site via ventilated capsule. At the end of the last dose, maximal CVC was elicited by delivering a maximal dose of SNP (5 × 10-2 M) for 30 min to both sites with simultaneous local heating (~44°C) at the SNP site. The concentration of drug needed to elicit 50% of the maximal response (log EC50) was compared between hydration conditions. The percent body mass loss was greater with HY vs. EU (-2.2 ± 0.7 vs. -0.1 ± 0.7%, P 50 of endothelium-dependent CVC was lower with EU (-3.62 ± 0.22) vs. HY (-2.93 ± 0.08; P = 0.044). Hypohydration did not significantly alter endothelium-independent CVC or LSR (both P > 0.05). In conclusion, hypohydration attenuated endothelium-dependent CVC but did not affect endothelium-independent CVC or LSR responses. These data suggest that reductions in skin blood flow accompanying hypohydration can be partially attributed to altered postsynaptic function.
Abstract via Europe PMC. Copyright remains with the authors or publisher.
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