首页> 外文期刊>European Journal of Pharmacology: An International Journal >R(+)-pulegone impairs Ca(2)+ homeostasis and causes negative inotropism in mammalian myocardium.
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R(+)-pulegone impairs Ca(2)+ homeostasis and causes negative inotropism in mammalian myocardium.

机译:R(+)-pulegone损害Ca(2)+稳态,并导致哺乳动物心肌负性变力。

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The present study aimed to investigate the inotropic effects of R(+)-pulegone, a monoterpene found in plant species belonging to the genus Mentha, on the mammalian heart. In electrically stimulated guinea pig atria, R(+)-pulegone reduced the contractile force (~83%) and decreased the contraction time measured at 50% of the maximum force amplitude (CT(50)) from 45.8 +/- 6.2 ms to 36.9 +/- 6.2 ms, suggesting that R(+)-pulegone may have an effect on Ca(2+) homeostasis. Nifedipine (40 muM), taken as a positive control, showed a very similar profile. To explore the hypothesis that R(+)-pulegone is somehow affecting Ca(2+) handling, we determined concentration-response curves for both CaCl(2) and BAY K8644. R(+)-pulegone shifted these curves rightward. Using isolated mouse ventricular cardiomyocytes, we measured whole-cell L-type Ca(2+) current and observed an I(Ca,L) peak reduction of 13.7 +/- 2.5% and 40.2 +/- 2.9% after a 3-min perfusion with 0.11 and 1.1mM of R(+)-pulegone, respectively. In addition, the intracellular Ca(2+) transient was decreased (72.9%) by 3.2mM R(+)-pulegone, with no significant changes in [Ca(2+)](i) transient decay kinetics. Moreover, R(+)-pulegone at 1.1mM prolonged the action potential duration at 10, 50, and 90% of repolarisation. The lengthening of the action potential duration may be attributed to the substantial blockade of the outward K(+) currents caused by 1.1mM of R(+)-pulegone (90.5% at 60 mV). These findings suggest that R(+)-pulegone exerts its negative inotropic effect on mammalian heart mainly by decreasing the L-type Ca(2+) current and the global intracellular Ca(2+) transient.
机译:本研究旨在调查R(+)-pulegone(在属于薄荷类的植物中发现的单萜)对哺乳动物心脏的正性肌力作用。在电刺激的豚鼠心房中,R(+)-普勒高酮降低了收缩力(〜83%),并将在最大作用力幅度(CT(50))的50%处测得的收缩时间从45.8 +/- 6.2 ms降低至36.9 +/- 6.2毫秒,表明R(+)-普勒高酮可能对Ca(2+)稳态具有影响。硝苯地平(40μM)作为阳性对照,表现出非常相似的特征。要探讨R(+)-普勒酮在某种程度上影响Ca(2+)处理的假设,我们确定了CaCl(2)和BAY K8644的浓度-响应曲线。 R(+)-pulegone向右移动这些曲线。使用隔离的小鼠心室心肌细胞,我们测量了全细胞L型Ca(2+)电流,并观察了3分钟后I(Ca,L)的峰值降低了13.7 +/- 2.5%和40.2 +/- 2.9%分别用0.11和1.1mM的R(+)-pulegone灌注。此外,细胞内Ca(2+)瞬变降低了3.2mM R(+)-普勒高酮(72.9%),[Ca(2 +)](i)瞬变衰减动力学没有显着变化。此外,在1.1mM的R(+)-普勒高酮可延长10、50和90%复极化时的动作电位持续时间。动作电位持续时间的延长可归因于由1.1mM的R(+)-普勒高酮(90.5%在60 mV)引起的向外K(+)电流的实质性阻滞。这些发现表明R(+)-pulegone主要通过降低L型Ca(2+)电流和全局细胞内Ca(2+)瞬变对哺乳动物的心脏发挥其负性变力作用。

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