Sutanto Henry, Hertanto Decsa Medika, Susilo Hendri, Wungu Citrawati Dyah Kencono
Department of Internal Medicine, Faculty of Medicine, Universitas Airlangga, Surabaya 60131, Indonesia.
Department of Internal Medicine, Dr. Soetomo General Hospital, Surabaya 60286, Indonesia.
Antioxidants (Basel). 2022 Aug 27;11(9):1672. doi: 10.3390/antiox11091672.
Recent in vitro studies showed that grapefruit ( × ) flavonoid naringenin alters the function of cardiac ion channels. Here, we explored the effect of naringenin on cardiomyocyte action potentials (APs) using a detailed in silico model of ventricular electrophysiology. Concentration-dependent effects of naringenin on seven major cardiac ion channels were incorporated into the Tomek-Rodriguez modification of O'Hara-Rudy (ToR-ORd) human ventricular endocardium model. To investigate the sex-dependent effect of naringenin, previously reported sex-specific ionic modifications were implemented into the model. Next, populations of 1000 models accommodating intercellular variability were generated. The results show, naringenin at various concentrations prolonged AP duration (APD) in male and female cardiomyocytes. Pacing cells at higher frequencies abbreviated APD differently in males versus females; for example, at 3 Hz, 50 μM naringenin induced AP and calcium alternans only in the female cardiomyocyte. Finally, a population modeling approach corroborated that naringenin significantly prolonged APD in a concentration-dependent manner, with a larger effect in females than in males. In conclusion, our study demonstrates that the APD-prolonging effect of naringenin was larger in females, and that pacing at faster rates induces AP alternation earlier in females, suggesting a potentially higher proarrhythmic risk of naringenin in females than in males.
近期的体外研究表明,葡萄柚(×)类黄酮柚皮素可改变心脏离子通道的功能。在此,我们使用详细的心室电生理计算机模型,探究了柚皮素对心肌细胞动作电位(AP)的影响。将柚皮素对七种主要心脏离子通道的浓度依赖性效应纳入O'Hara-Rudy(ToR-ORd)人心室内膜模型的Tomek-Rodriguez修正版中。为研究柚皮素的性别依赖性效应,将先前报道的性别特异性离子修饰纳入该模型。接下来,生成了1000个适应细胞间变异性的模型群体。结果显示,不同浓度的柚皮素均可延长雄性和雌性心肌细胞的动作电位时程(APD)。以较高频率起搏细胞时,雄性和雌性的APD缩短情况不同;例如,在3 Hz时,50 μM柚皮素仅在雌性心肌细胞中诱导动作电位和钙交替现象。最后,群体建模方法证实,柚皮素以浓度依赖性方式显著延长APD,对雌性的影响大于雄性。总之,我们的研究表明,柚皮素延长APD的效应在雌性中更大,且更快的起搏速率在雌性中更早诱导动作电位交替,这表明柚皮素在雌性中比在雄性中具有更高的潜在致心律失常风险。