Biomedical Research Institute of Barcelona, IIBB-CSIC, 08036 Barcelona, Spain.
Institut d'Investigació Biomèdica Sant Pau (IIB Sant Pau), 08025 Barcelona, Spain.
Int J Mol Sci. 2023 Feb 23;24(5):4404. doi: 10.3390/ijms24054404.
Increased adenosine A receptor (AR) expression and activation underlies a higher incidence of spontaneous calcium release in atrial fibrillation (AF). Adenosine A receptors (AR) could counteract excessive AR activation, but their functional role in the atrium remains elusive, and we therefore aimed to address the impact of ARs on intracellular calcium homeostasis. For this purpose, we analyzed right atrial samples or myocytes from 53 patients without AF, using quantitative PCR, patch-clamp technique, immunofluorescent labeling or confocal calcium imaging. AR mRNA accounted for 9% and AR mRNA for 32%. At baseline, AR inhibition increased the transient inward current (I) frequency from 0.28 to 0.81 events/min ( < 0.05). Simultaneous stimulation of ARs and ARs increased the calcium spark frequency seven-fold ( < 0.001) and the I frequency from 0.14 to 0.64 events/min ( < 0.05). Subsequent AR inhibition caused a strong additional increase in the I frequency (to 2.04 events/min; < 0.01) and increased phosphorylation at s2808 1.7-fold ( < 0.001). These pharmacological treatments had no significant effects on L-type calcium current density or sarcoplasmic reticulum calcium load. In conclusion, ARs are expressed and blunt spontaneous calcium release at baseline and upon AR-stimulation in human atrial myocytes, pointing to AR activation as a means to attenuate physiological and pathological elevations of spontaneous calcium release events.
腺苷 A 受体 (AR) 的表达和激活增加是心房颤动 (AF) 中自发性钙释放增加的基础。腺苷 A 受体 (AR) 可以抵消过度的 AR 激活,但它们在心房中的功能作用仍不清楚,因此我们旨在研究 AR 对细胞内钙稳态的影响。为此,我们使用定量 PCR、膜片钳技术、免疫荧光标记或共聚焦钙成像分析了 53 名无 AF 患者的右心房样本或心肌细胞。AR mRNA 占 9%,AR mRNA 占 32%。在基础状态下,AR 抑制将瞬时内向电流 (I) 的频率从 0.28 增加到 0.81 事件/分钟(<0.05)。同时刺激 AR 和 AR 可将钙火花频率增加七倍(<0.001),并将 I 频率从 0.14 增加到 0.64 事件/分钟(<0.05)。随后的 AR 抑制会导致 I 频率强烈增加(至 2.04 事件/分钟;<0.01),并使 s2808 的磷酸化增加 1.7 倍(<0.001)。这些药物处理对 L 型钙电流密度或肌浆网钙负荷没有显著影响。总之,AR 在人类心房肌细胞中表达,并在基础状态和 AR 刺激时使自发性钙释放减弱,表明 AR 激活可作为减轻生理性和病理性自发性钙释放增加的一种手段。