Inhibition of Adenosine Pathway Alters Atrial Electrophysiology and Prevents Atrial Fibrillation

中国共产党 腺苷 有效耐火期 内科学 电生理学 心房颤动 复极 兴奋剂 腺苷A1受体 腺苷受体 心房动作电位 化学 内分泌学 医学 药理学 受体
作者
Luca Soattin,Anniek F. Lubberding,Bo Hjorth Bentzen,Torsten Christ,Thomas Jespersen
出处
期刊:Frontiers in Physiology [Frontiers Media]
卷期号:11 被引量:12
标识
DOI:10.3389/fphys.2020.00493
摘要

Background Adenosine leads to atrial action potential (AP) shortening through activation of adenosine 1 receptors (A1-R) and subsequent opening of G protein-coupled inwardly rectifying K+ channels. Extracellular production of adenosine is drastically increased during stress and ischemia. Objective The aim of this study was to address whether the pharmacological blockade of endogenous production of adenosine and of its signaling prevents atrial fibrillation (AF) Methods The role of A1-R activation on atrial action potential duration, refractoriness and AF vulnerability was investigated in rat isolated beating heart preparations (Langendorff) with an A1-R agonist (CCPA, 50 nM) and antagonist (PSB36, 40 nM). Further, to interfere with the endogenous adenosine release, the ecto-5'-nucleotidase (CD73) inhibitor was applied (AMPCP, 500 μM). Isolated trabeculae from human right atrial appendages (hRAAs) were used for comparison. Results As expected, CCPA shortened AP duration at 90% of repolarization (APD90) and effective refractory period (ERP) in rat atria. PSB36 prolonged APD90 and ERP in rat atria and CD73 inhibition with AMPCP prolonged ERP in rats, confirming that endogenously produced amount of adenosine is sufficiently high to alter atrial electrophysiology. In human atrial appendages, CCPA shortened APD90, while PSB36 prolonged it. Rat hearts treated with CCPA are prone to AF. In contrast, PSB36 and AMPCP prevented AF events and reduced AF duration (vehicle 11.5±2.6 s; CCPA 40.6±16.1 s; PSB36 6.5±3.7 s; AMPCP 3.0±1.4 s; P<0.0001). Conclusion A1-R activation by intrinsic adenosine release alters atrial electrophysiology and promotes AF. Inhibition of adenosine pathway protects atria from arrhythmic events.

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