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PMID: 11927694 Published · ppublish English Clinical Trial Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Nitric oxide-dependent modulation of sympathetic neural control of oxygenation in exercising human skeletal muscle.

The Journal of physiology ·Vol. 540 ·No. Pt 1 ·2002-04-01 ·Pages 377-86

Chavoshan B, Sander M, Sybert TE, Hansen J, Victor RG, Thomas GD

Abstract

Nitric oxide (NO) attenuates alpha-adrenergic vasoconstriction in contracting rodent skeletal muscle, but it is unclear if NO plays a similar role in human muscle. We therefore hypothesized that in humans, NO produced in exercising skeletal muscle blunts the vasoconstrictor response to sympathetic activation. We assessed vasoconstrictor responses in the microcirculation of human forearm muscle using near-infrared spectroscopy to measure decreases in muscle oxygenation during reflex sympathetic activation evoked by lower body negative pressure (LBNP). Experiments were performed before and after NO synthase inhibition produced by systemic infusion of N(G)-nitro-L-arginine methyl ester (L-NAME). Before L-NAME, LBNP at -20 mmHg decreased muscle oxygenation by 20 +/- 2 % in resting forearm and by 2 +/- 3 % in exercising forearm (n = 20), demonstrating metabolic modulation of sympathetic vasoconstriction. As expected, L-NAME increased mean arterial pressure by 17 +/- 3 mmHg, leading to baroreflex-mediated suppression of baseline muscle sympathetic nerve activity (SNA). The increment in muscle SNA in response to LBNP at -20 mmHg also was attenuated after L-NAME (before, +14 +/- 2; after, +8 +/- 1 bursts min(-1); n = 6), but this effect of L-NAME was counteracted by increasing LBNP to -40 mmHg (+19 +/- 2 bursts min(-1)). After L-NAME, LBNP at -20 mmHg decreased muscle oxygenation similarly in resting (-11 +/- 3 %) and exercising (-10 +/- 2 %) forearm (n = 12). Likewise, LBNP at -40 mmHg decreased muscle oxygenation both in resting (-19 +/- 4 %) and exercising (-21 +/- 5 %) forearm (n = 8). These data advance the hypothesis that NO plays an important role in modulating sympathetic vasoconstriction in the microcirculation of exercising muscle, because such modulation is abrogated by NO synthase inhibition with L-NAME.

MeSH Terms
Adult Anesthesia Animals Baroreflex/physiology Consciousness Electric Stimulation Enzyme Inhibitors/administration & dosage Female Forearm/blood supply Humans Lower Body Negative Pressure Male Muscle Contraction/physiology Muscle, Skeletal/blood supply,physiology NG-Nitroarginine Methyl Ester/administration & dosage Nitric Oxide/metabolism Nitric Oxide Synthase/antagonists & inhibitors Oxygen Consumption/physiology Physical Exertion/physiology Rats Sympathetic Nervous System/physiology Vasoconstriction/drug effects,physiology
Chemicals
Enzyme Inhibitors Nitric Oxide Nitric Oxide Synthase NG-Nitroarginine Methyl Ester
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Chavoshan Bahman
Department of Internal Medicine, Hypertension Division, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390, USA.
Sander Mikael
Sybert Troy E
Hansen Jim
Victor Ronald G
Thomas Gail D
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Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
2002-04-01
Pages
377-86
Language
English
Region
England
NLM ID
0266262
PMCID
PMC2290221
Subset
IM
Grants
NHLBI NIH HHS · P01 HL006296 · United States
NHLBI NIH HHS · T32 HL007360 · United States
NHLBI NIH HHS · HL06296 · United States
NHLBI NIH HHS · HL07360 · United States
Corrections
CommentIn
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