Study2016

Passive heat therapy improves cutaneous microvascular function in sedentary humans via improved nitric oxide-dependent dilation

Brunt VE, Eymann TM, Francisco MA, Howard MJ, Minson CT

Journal of applied physiology (Bethesda, Md. : 1985) · 121 citations

How it was studied

Design
Randomized controlled trial (classified by our AI screen)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Independent funding
Nonprofit
American Heart Association
Government
National Heart, Lung, and Blood Institute
Government
NHLBI NIH HHS
Nonprofit
The Eugene and Clarissa Evonuk Memorial Foundation
Nonprofit
American Heart Association (AHA)
Nonprofit
The Ken and Kenda Singer Endowment
Grants
National Heart, Lung, and Blood Institute (T32 HL-007822); American Heart Association (14PRE20380300)

Based on 6 listed funder(s).

Publication

Published
2016-07-15 · J Appl Physiol (1985) · vol. 121 · issue 3 · pp. 716–723
Publisher
American Physiological Society
Cited
153 citations · more than 98% of similar papers · 8.1× the field average
Impact
Top 10% most cited in its field
References
47 works
Access
Open access (repository copy)
Research areas
Thermoregulation and physiological responses · Exercise and Physiological Responses · Infrared Thermography in Medicine
Keywords
Microdialysis, Nitric oxide, Medicine, Microcirculation, Chemistry, Internal medicine, Endocrinology, Anesthesia
MeSH
microcirculation, skin, humans, nitric oxide, hyperthermia, induced, heating, vasodilation, adult, middle aged, female, male, skin physiological phenomena, sedentary behavior

5 authors

From US

  • Vienna Elizabeth BruntUniversity of Oregon
  • Taylor M. EymannUniversity of Oregon
  • Michael A. FranciscoUniversity of Oregon
  • Matthew J. HowardUniversity of Oregon
  • Christopher Todd Minson · correspondingUniversity of Oregon

Abstract

Passive heat therapy (repeated hot tub or sauna use) reduces cardiovascular risk, but its effects on the mechanisms underlying improvements in microvascular function have yet to be studied. We investigated the effects of heat therapy on microvascular function and whether improvements were related to changes in nitric oxide (NO) bioavailability using cutaneous microdialysis. Eighteen young, sedentary, otherwise healthy subjects participated in 8 wk of heat therapy (hot water immersion to maintain rectal temperature ≥38.5°C for 60 min/session; n = 9) or thermoneutral water immersion (sham, n = 9), and participated in experiments before and after the 8-wk intervention in which forearm cutaneous hyperemia to 39°C local heating was assessed at three microdialysis sites receiving 1) Lactated Ringer's (Control), 2) N(ω)-nitro-l-arginine (l-NNA; nonspecific NO synthase inhibitor), and 3) 4-hydroxy-2,2,6,6-tetramethylpiperidine-1-oxyl (Tempol), a superoxide dismutase mimetic. The arm used for microdialysis experiments remained out of the water at all times. Data are means ± SE cutaneous vascular conductance (CVC = laser Doppler flux/mean arterial pressure), presented as percent maximal CVC (% CVCmax). Heat therapy increased local heating plateau from 42 ± 6 to 53 ± 6% CVCmax (P < 0.001) and increased NO-dependent dilation (difference in plateau between Control and l-NNA sites) from 26 ± 6 to 38 ± 4% CVCmax (P < 0.01), while no changes were observed in the sham group. When data were pooled across all subjects at 0 wk, Tempol had no effect on the local heating response (P = 0.53 vs. Control). There were no changes at the Tempol site across interventions (P = 0.58). Passive heat therapy improves cutaneous microvascular function by improving NO-dependent dilation, which may have clinical implications.

Abstract via Europe PMC. Copyright remains with the authors or publisher.

Community trust

Loading…

How much do you trust this study's findings?

0 · not at all10 · completely

Comments

Sign in to rate, comment on or flag this study.Sign in

Something wrong here?

Flag this study if its information, labels or funding look wrong. An editor reviews every flag.

Sign in to rate, comment on or flag this study.Sign in

Educational information about published research. Not medical advice, and not a recommendation to start or stop anything.