Huo Jianyi, Yang Hua-Qian
Cyrus Tang Medical Institute, Soochow University, Suzhou 215123, Jiangsu, China.
Biophys Rep. 2025 Apr 30;11(2):77-86. doi: 10.52601/bpr.2024.240023.
ATP-sensitive potassium (K) channels are integral components in excitable cells, particularly in cardiomyocytes, serving as critical regulators of cellular metabolism and electrical excitability. In instances of prolonged oxygen deprivation or heightened metabolic requirements, the opening of K channels enables potassium efflux by virtue of a diminished ATP/ADP ratio. This process aids in maintaining membrane potential stability, thereby mitigating excessive excitability and cellular contraction, ultimately contributing significantly to cardiac protection. The accurate isolation of intact single cardiomyocytes and the electrophysiological evaluation of K channels are pivotal processes in research on K channels in cardiomyocytes . Here, we present a comprehensive protocol not only for the efficient isolation of viable cardiomyocytes from the adult mouse through the Langendorff perfusion method, but also for the recording of K channel currents in single cardiomyocytes employing patch clamp technique.
ATP敏感性钾(K)通道是可兴奋细胞的重要组成部分,尤其是在心肌细胞中,作为细胞代谢和电兴奋性的关键调节因子。在长时间缺氧或代谢需求增加的情况下,K通道的开放会因ATP/ADP比值降低而使钾外流。这一过程有助于维持膜电位稳定性,从而减轻过度兴奋性和细胞收缩,最终对心脏保护起到重要作用。完整单个心肌细胞的准确分离以及K通道的电生理评估是心肌细胞K通道研究中的关键步骤。在此,我们不仅提供了一种通过Langendorff灌注法从成年小鼠高效分离有活力心肌细胞的综合方案,还提供了一种采用膜片钳技术记录单个心肌细胞K通道电流的方法。