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Publication : Selective deletion of the A1 adenosine receptor abolishes heart-rate slowing effects of intravascular adenosine in vivo.

First Author  Koeppen M Year  2009
Journal  PLoS One Volume  4
Issue  8 Pages  e6784
PubMed ID  19707555 Mgi Jnum  J:152403
Mgi Id  MGI:4358650 Doi  10.1371/journal.pone.0006784
Citation  Koeppen M, et al. (2009) Selective deletion of the A1 adenosine receptor abolishes heart-rate slowing effects of intravascular adenosine in vivo. PLoS One 4(8):e6784
abstractText  OBJECTIVE: Intravenous adenosine induces temporary bradycardia. This is due to the activation of extracellular adenosine receptors (ARs). While adenosine can signal through any of four ARs (A1AR, A2AAR, A2BAR, A3AR), previous ex vivo studies implicated the A1AR in the heart-rate slowing effects. Here, we used comparative genetic in vivo studies to address the contribution of individual ARs to the heart-rate slowing effects of intravascular adenosine. METHODS AND RESULTS: We studied gene-targeted mice for individual ARs to define their in vivo contribution to the heart-rate slowing effects of adenosine. Anesthetized mice were treated with a bolus of intravascular adenosine, followed by measurements of heart-rate and blood pressure via a carotid artery catheter. These studies demonstrated dose-dependent slowing of the heart rate with adenosine treatment in wild-type, A2AAR(-/-), A2BAR(-/-), or A3AR(-/-) mice. In contrast, adenosine-dependent slowing of the heart-rate was completely abolished in A1AR(-/-) mice. Moreover, pre-treatment with a specific A1AR antagonist (DPCPX) attenuated the heart-rate slowing effects of adenosine in wild-type, A2AAR(-/-), or A2BAR(-/-) mice, but did not alter hemodynamic responses of A1AR(-/-) mice. CONCLUSIONS: The present studies combine pharmacological and genetic in vivo evidence for a selective role of the A1AR in slowing the heart rate during adenosine bolus injection.
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