Exogenous ATP infusion abolished postjunctional alpha1-adrenergic (-3% vs -39% for adenosine) and alpha2-adrenergic (-4% vs -40%) vasoconstriction in the human forearm in a dose-dependent manner.
Does exogenous ATP blunt direct postjunctional alpha-adrenergic vasoconstriction in young adults?
Exogenous ATP blunts direct postjunctional alpha-adrenergic vasoconstriction in a dose-dependent manner, involving both alpha1- and alpha2-receptor subtypes.
p-value: p=<0.05
Recent evidence suggests that adenosine triphosphate (ATP) can inhibit vasoconstrictor responses to endogenous noradrenaline release via tyramine in the skeletal muscle circulation, similar to what is observed in contracting muscle. Whether this involves direct modulation of postjunctional alpha-adrenoceptor responsiveness, or is selective for alpha(1)- or alpha(2)-receptors remains unclear. Therefore, in Protocol 1, we tested the hypothesis that exogenous ATP can blunt direct postjunctional alpha-adrenergic vasoconstriction in humans. We measured forearm blood flow (FBF; Doppler ultrasound) and calculated the vascular conductance (FVC) responses to local intra-arterial infusions of phenylephrine (alpha(1)-agonist) and dexmedetomidine (alpha(2)-agonist) during moderate rhythmic handgrip exercise (15% maximum voluntary contraction), during a control non-exercise vasodilator condition (adenosine), and during ATP infusion in eight young adults. Forearm hyperaemia was matched across all conditions. Forearm vasoconstrictor responses to direct alpha(1)-receptor stimulation were blunted during exercise versus adenosine (DeltaFVC = -11 +/- 3% versus -39 +/- 5%; P 0.05). In contrast, vasoconstrictor responses during moderate (-22 +/- 6%) and high dose ATP (-8 +/- 5%) were significantly blunted compared with rest, whereas the responses during adenosine became progressively greater (moderate = -48 +/- 4%, P = 0.10; high = -53 +/- 6%, P< 0.05). We conclude that exogenous ATP is capable of blunting direct postjunctional alpha-adrenergic vasoconstriction, that this involves both alpha(1)- and alpha(2)-receptor subtypes, and that this is graded with ATP concentrations. Collectively, these data are consistent with the conceptual framework regarding how muscle blood flow and vascular tone are regulated in contracting muscles of humans.
Kirby et al. (Fri,) reported a other. Exogenous ATP vs. Adenosine and rest was evaluated on Forearm vasoconstrictor responses (change in vascular conductance) to alpha1- and alpha2-receptor stimulation (p=<0.05). Exogenous ATP infusion abolished postjunctional alpha1-adrenergic (-3% vs -39% for adenosine) and alpha2-adrenergic (-4% vs -40%) vasoconstriction in the human forearm in a dose-dependent manner.