Xu Hao, Zhao Manxi, Liang Shenghui, Huang Quanshu, Xiao Yunchuan, Ye Liang, Wang Qinyi, He Longmei, Ma Lanxiang, Zhang Hua, Zhang Li, Jiang Hui, Ke Xiao, Gu Yuchun
Laboratory of Molecular Pharmacology, IMM, Peking University, Beijing, 100871, China.
Laboratory of Innovative Drug Development and Translational Medicine Research of Traditional Chinese Medicine, Chengdu Kanghong Pharmaceutical Limited Company, Chengdu, 610036, China.
Sci Rep. 2016 Oct 20;6:35475. doi: 10.1038/srep35475.
Puerarin, a known isoflavone, is commonly found as a Chinese herb medicine. It is widely used in China to treat cardiac diseases such as angina, cardiac infarction and arrhythmia. However, its cardioprotective mechanism remains unclear. In this study, puerarin significantly prolonged ventricular action potential duration (APD) with a dosage dependent manner in the micromolar range on isolated rat ventricular myocytes. However, submicromolar puerarin had no effect on resting membrane potential (RMP), action potential amplitude (APA) and maximal velocity of depolarization (Vmax) of action potential. Only above the concentration of 10 mM, puerarin exhibited more aggressive effect on action potential, and shifted RMP to the positive direction. Millimolar concentrations of puerarin significantly inhibited inward rectified K channels in a dosage dependent manner, and exhibited bigger effects upon Kir2.1 vs Kir2.3 in transfected HEK293 cells. As low as micromolar range concentrations of puerarin significantly inhibited Kv7.1 and IKs. These inhibitory effects may due to the direct inhibition of puerarin upon channels not via the PKA-dependent pathway. These results provided direct preclinical evidence that puerarin prolonged APD via its inhibitory effect upon Kv7.1 and IKs, contributing to a better understanding the mechanism of puerarin cardioprotection in the treatment of cardiovascular diseases.
葛根素是一种已知的异黄酮,常见于中草药中。在中国,它被广泛用于治疗心绞痛、心肌梗死和心律失常等心脏疾病。然而,其心脏保护机制尚不清楚。在本研究中,葛根素在微摩尔范围内以剂量依赖的方式显著延长了离体大鼠心室肌细胞的动作电位时程(APD)。然而,亚微摩尔浓度的葛根素对静息膜电位(RMP)、动作电位幅度(APA)和动作电位最大去极化速度(Vmax)没有影响。只有在浓度高于10 mM时,葛根素对动作电位表现出更强的作用,并使RMP向正向偏移。毫摩尔浓度的葛根素以剂量依赖的方式显著抑制内向整流钾通道,并且对转染的HEK293细胞中的Kir2.1的作用比对Kir2.3的作用更大。低至微摩尔范围浓度的葛根素也显著抑制Kv7.1和IKs。这些抑制作用可能是由于葛根素直接抑制通道,而非通过PKA依赖的途径。这些结果提供了直接的临床前证据,表明葛根素通过抑制Kv7.1和IKs来延长APD,有助于更好地理解葛根素在治疗心血管疾病中的心脏保护机制。