Cholinergic nerve contribution to cutaneous active vasodilation during exercise is similar to whole body passive heating
Francisco MA, Gibson BM, Simmons GH, Halliwill JR, Minson CT
Journal of applied physiology (Bethesda, Md. : 1985) · 4 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
- University or hospital
- University of Oregon
- Government
- National Institute on Aging
- Government
- National Heart, Lung, and Blood Institute
- Government
- HHS | NIH | National Institute on Aging
- Government
- HHS | NIH | National Heart, Lung, and Blood Institute
- Government
- NHLBI NIH HHS
- Government
- NIA NIH HHS
- Grants
- National Heart, Lung, and Blood Institute (HL144128); National Heart, Lung, and Blood Institute (R01 HL144128); National Institute on Aging (AG072805); National Institute on Aging (R01 AG072805)
Based on 7 listed funder(s).
Publication
- Published
- 2023-02-24 · J Appl Physiol (1985) · vol. 134 · issue 4 · pp. 933–940
- Publisher
- American Physiological Society
- Cited
- 4 citations · more than 62% of similar papers · 0.6× the field average
- References
- 26 works
- Access
- Open access (repository copy)
- Research areas
- Thermoregulation and physiological responses · Heart Rate Variability and Autonomic Control · Olfactory and Sensory Function Studies
- Keywords
- Vasodilation, Cholinergic, Skin temperature, Medicine, Thermoregulation, Acetylcholine, Internal medicine, Chemistry, Endocrinology, Biomedical engineering
- MeSH
- skin, humans, fever, cholinergic agents, cross-over studies, heating, regional blood flow, vasodilation, botulinum toxins, type a
5 authors
From US
- Michael A. FranciscoUniversity of Oregon
- Brandon M. GibsonUniversity of Oregon
- Grant H. SimmonsUniversity of Oregon
- John R. HalliwillUniversity of Oregon
- Christopher Todd Minson · correspondingUniversity of Oregon
Abstract
Sympathetic cholinergic nerve cotransmission is widely accepted as the mechanism of cutaneous active vasodilation (CAVD) during whole body passive heating (passive heating). However, recent research suggests that there may be mechanistic differences in CAVD to heating, depending on the modality of thermal loading. It is unknown whether sympathetic cholinergic cotransmission explains CAVD during exercise. This study sought to confirm the role of cholinergic nerves in CAVD during passive heating and expand these findings to exercise. It was hypothesized that CAVD during both exercise and passive heating would be abolished by cholinergic nerve blockade. Eight young (18-30 yr) recreationally active individuals exercised (1 h seated cycling at 60% V̇o2peak) and were passively heated (∼1 h seated passive heating with mean skin temperature clamped at 39°C by water-perfused suit), in randomized order on separate days. Cholinergic nerves were blocked via Botox ∼2 wk prior to the study. Skin blood flow was assessed using laser Doppler flowmetry and expressed as percent of maximum cutaneous vascular conductance (%CVCmax). At the end of exercise/passive heating, internal temperature had increased by ∼0.7°C. The %CVCmax at the Botox-treated sites (exercise: 19 ± 6 and passive heating: 15 ± 14%CVCmax) was significantly less (P P = 0.909; modality-Botox interaction, P = 0.230). We conclude that CAVD during both exercise and passive heating is mediated by sympathetic cholinergic nerves, a critical thermoregulatory mechanism that appears to be independent of the thermal loading modality.NEW & NOTEWORTHY Our study establishes the primacy of cholinergic nerves to cutaneous active vasodilation during exercise and confirms this model during passive heating using a crossover study design. In addition, the mode of heating, whether passive or exercise induced, did not change the sensitivity of the cholinergic component of the thermoeffector response to increased internal temperature. Thus, cutaneous active vasodilator nerves are responsible for similar skin blood flow responses regardless of how thermal loading is accomplished.
Abstract via Europe PMC. Copyright remains with the authors or publisher.
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