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Muscle metaboreflex activation during dynamic exercise vasoconstricts ischemic active skeletal muscle.

Authors :
Kaur, Jasdeep
Machado, Tiago M.
Alvarez, Alberto
Krishnan, Abhinav C.
Hanna, Hanna W.
Altamimi, Yasir H.
Senador, Danielle
Spranger, Marty D.
O'Leary, Donal S.
Source :
American Journal of Physiology: Heart & Circulatory Physiology. Dec2015, Vol. 309 Issue 12, pH2145-H2151. 7p.
Publication Year :
2015

Abstract

Metabolite accumulation due to ischemia of active skeletal muscle stimulates group III/IV chemosensitive afferents eliciting reflex increases in arterial blood pressure and sympathetic activity, termed the muscle metaboreflex. We and others have previously demonstrated sympathetically mediated vasoconstriction of coronary, renal, and forelimb vasculatures with muscle metaboreflex activation (MMA). Whether MMA elicits vasoconstriction of the ischemic muscle from which it originates is unknown. We hypothesized that the vasodilation in active skeletal muscle with imposed ischemia becomes progressively restrained by the increasing sympathetic vasoconstriction during MMA. We activated the metaboreflex during mild dynamic exercise in chronically instrumented canines via graded reductions in hindlimb blood flow (HLBF) before and after a1-adrenergic blockade [prazosin (50 µg/kg)], β-adrenergic blockade [propranolol (2 mg/kg)], and a1 + β-blockade. Hindlimb resistance was calculated as femoral arterial pressure/HLBF. During mild exercise, HLBF must be reduced below a threshold level before the reflex is activated. With initial reductions in HLBF, vasodilation occurred with the imposed ischemia. Once the muscle metaboreflex was elicited, hindlimb resistance increased. This increase in hindlimb resistance was abolished by a1-adrenergic blockade and exacerbated after β-adrenergic blockade. We conclude that metaboreflex activation during submaximal dynamic exercise causes sympathetically mediated a-adrenergic vasoconstriction in ischemic skeletal muscle. This limits the ability of the reflex to improve blood flow to the muscle. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03636135
Volume :
309
Issue :
12
Database :
Academic Search Index
Journal :
American Journal of Physiology: Heart & Circulatory Physiology
Publication Type :
Academic Journal
Accession number :
111933452
Full Text :
https://doi.org/10.1152/ajpheart.00679.2015