Zhao Junli, Wang Yaqian, Gao Jie, Jing Yang, Xin Wenkuan
College of Pharmaceutical Sciences, Southwest University, Chongqing, China.
Front Pharmacol. 2020 Jun 5;11:821. doi: 10.3389/fphar.2020.00821. eCollection 2020.
Previous studies showed that berberine, an alkaloid from Franch, might exert a positive inotropic effect on the heart. However, the underlying mechanisms were unclear. Here, we reported that berberine at 10-20 µM increased the left ventricular (LV) developed pressure and the maximal rate of the pressure rising, and it increased the maximal rate of the pressure descending at 20 µM in Langendorff-perfused isolated rat hearts. These effects diminished with the concentration of berberine increasing to 50 µM. In the concentration range of 50-300 µM, berberine increased the isometric tension of isolated left ventricular muscle (LVM) strips with or without electrical stimulations, and it (30-300 µM) also increased the intracellular Ca level in the isolated LV myocytes. The removal of extracellular Ca hindered the berberine-induced increases in the tension of LVM strips and the intracellular Ca level of LV myocytes. These suggested that berberine might exert its positive inotropic effects enhancing Ca influx. The blockade of L-type Ca channels (LTCCs) with nifedipine significantly attenuated 300 μM berberine-induced tension increase in LVM strips but not the increase in the intracellular Ca level. Berberine (300 μM) further increased the LVM tension following the treatment with the LTCC opener FPL-64716 (10 μM), indicating an LTCC-independent effect of berberine. Lowering extracellular Na attenuated the berberine-induced increases in both the tension of LVM strips and the intracellular Ca level of LV myocytes. In conclusion, berberine might exert a positive inotropic effect on the isolated rat heart by enhancing the Ca influx in LV myocytes; these were extracellular Na-dependent.
先前的研究表明,小檗碱(一种来自黄连的生物碱)可能对心脏产生正性肌力作用。然而,其潜在机制尚不清楚。在此,我们报告称,在Langendorff灌注的离体大鼠心脏中,10 - 20 μM的小檗碱可增加左心室(LV)舒张末压力和压力上升的最大速率,且在20 μM时可增加压力下降的最大速率。随着小檗碱浓度增加至50 μM,这些作用减弱。在50 - 300 μM的浓度范围内,无论有无电刺激,小檗碱均可增加离体左心室肌(LVM)条带的等长张力,并且它(30 - 300 μM)还可增加离体LV心肌细胞内的Ca水平。去除细胞外Ca可阻碍小檗碱诱导的LVM条带张力增加和LV心肌细胞内Ca水平升高。这些表明小檗碱可能通过增强Ca内流发挥其正性肌力作用。用硝苯地平阻断L型Ca通道(LTCCs)可显著减弱300 μM小檗碱诱导的LVM条带张力增加,但不影响细胞内Ca水平的升高。在用LTCC开放剂FPL - 64716(10 μM)处理后,小檗碱(300 μM)进一步增加了LVM张力,表明小檗碱具有不依赖LTCC的作用。降低细胞外Na可减弱小檗碱诱导的LVM条带张力增加和LV心肌细胞内Ca水平升高。总之,小檗碱可能通过增强LV心肌细胞内的Ca内流对离体大鼠心脏产生正性肌力作用;这些作用依赖于细胞外Na。