Literature DB >> 12766177

Vasoconstriction in active skeletal muscles: a potential role for P2X purinergic receptors?

John B Buckwalter1, Jason J Hamann, Philip S Clifford.   

Abstract

There is evidence that ATP acts as a neurotransmitter in vascular smooth muscle and is coreleased with norepinephrine from sympathetic nerves. We hypothesized that P2X-receptor stimulation with the selective P2X-receptor agonist alpha,beta-methylene ATP would produce vasoconstriction in resting and exercising skeletal muscle. Six mongrel dogs were instrumented chronically with flow probes on the external iliac arteries of both hindlimbs and a catheter in one femoral artery. The selective P2X agonist alpha,beta-methylene ATP was infused as a bolus into the femoral artery catheter at rest and during mild, moderate, and heavy exercise. Intra-arterial infusions of alpha,beta-methylene ATP elicited reductions in vascular conductance of 54 +/- 5, 49 +/- 8, 39 +/- 8, and 30 +/- 6% at rest, 3 miles/h, 6 miles/h, and 6 miles/h at a 10% grade, respectively. The agonist infusions did not affect blood flow in the contralateral iliac artery. To examine whether nitric oxide is responsible for the attenuated vasoconstrictor response to P2X stimulation, the infusions were repeated in the presence of NG-nitro-l-arginine methyl ester. After nitric oxide synthase blockade, intra-arterial infusions of alpha,beta-methylene ATP elicited reductions in vascular conductance of 56 +/- 7, 61 +/- 8, 52 +/- 9, and 40 +/- 7% at rest, 3 miles/h, 6 miles/h, and 6 miles/h at a 10% grade, respectively. P2X-receptor responsiveness was attenuated during exercise compared with rest. Blockade of nitric oxide production did not affect the attenuation of P2X-receptor responsiveness during exercise. These data support the hypothesis that P2X purinergic receptors can produce vasoconstriction in exercising skeletal muscle.

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Year:  2003        PMID: 12766177     DOI: 10.1152/japplphysiol.00173.2003

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  12 in total

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2.  Exercise-induced inhibition of angiotensin II vasoconstriction in human thigh muscle.

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5.  The effect of aging on adrenergic and nonadrenergic receptor expression and responsiveness in canine skeletal muscle.

Authors:  D S Delorey; P S Clifford; S Mittelstadt; M M Anton; H A Kluess; J D Tune; U D Dincer; J B Buckwalter
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6.  Is tonic sympathetic vasoconstriction increased in the skeletal muscle vasculature of aged canines?

Authors:  D S DeLorey; J B Buckwalter; S W Mittelstadt; M M Anton; H A Kluess; P S Clifford
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7.  Effect of extraluminal ATP application on vascular tone and blood flow in skeletal muscle: implications for exercise hyperemia.

Authors:  Michael Nyberg; Baraa K Al-Khazraji; Stefan P Mortensen; Dwayne N Jackson; Christopher G Ellis; Ylva Hellsten
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8.  Circulating ATP-induced vasodilatation overrides sympathetic vasoconstrictor activity in human skeletal muscle.

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9.  Short-term exercise training augments 2-adrenoreceptor-mediated sympathetic vasoconstriction in resting and contracting skeletal muscle.

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10.  ATP overflow in skeletal muscle 1A arterioles.

Authors:  Heidi A Kluess; Audrey J Stone; Kirk W Evanson
Journal:  J Physiol       Date:  2010-06-21       Impact factor: 5.182

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