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Long-Term Fish Oil Supplementation Induces Cardiac Electrical Remodeling by Changing Channel Protein Expression in the Rabbit Model

机译:长期补充鱼油通过改变兔模型中通道蛋白的表达诱导心脏电重构

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摘要

Clinical trials and epidemiological studies have suggested that dietary fish oil (FO) supplementation can provide an anti-arrhythmic benefit in some patient populations. The underlying mechanisms are not entirely clear. We wanted to understand how FO supplementation (for 4 weeks) affected the action potential configuration/duration of ventricular myocytes, and the ionic mechanism(s)/molecular basis for these effects. The experiments were conducted on adult rabbits, a widely used animal model for cardiac electrophysiology and pathophysiology. We used gas chromatography - mass spectroscopy to confirm that FO feeding produced a marked increase in the content of n-3 polyunsaturated fatty acids in the phospholipids of rabbit hearts. Left ventricular myocytes were used in current and voltage clamp experiments to monitor action potentials and ionic currents, respectively. Action potentials of myocytes from FO-fed rabbits exhibited much more positive plateau voltages and prolonged durations. These changes could be explained by an increase in the L-type Ca current (ICaL) and a decrease in the transient outward current (Ito) in these myocytes. FO feeding did not change the delayed rectifier or inward rectifier current. Immunoblot experiments showed that the FO-feeding induced changes in ICaL and Ito were associated with corresponding changes in the protein levels of major pore-forming subunits of these channels: increase in Cav1.2 and decrease in Kv4.2 and Kv1.4. There was no change in other channel subunits (Cav1.1, Kv4.3, KChIP2, and ERG1). We conclude that long-term fish oil supplementation can impact on cardiac electrical activity at least partially by changing channel subunit expression in cardiac myocytes.
机译:临床试验和流行病学研究表明,膳食鱼油(FO)补充剂可以在某些患者人群中提供抗心律不齐的益处。潜在的机制尚不完全清楚。我们想了解补充FO(4周)如何影响心室肌细胞的动作电位构型/持续时间,以及这些效应的离子机制/分子基础。实验是在成年兔身上进行的,成年兔是心脏电生理和病理生理的一种广泛使用的动物模型。我们使用气相色谱-质谱法确认了FO进料在兔心脏磷脂中产生了n-3多不饱和脂肪酸含量的显着增加。左心室心肌细胞分别在电流和电压钳实验中用于监测动作电位和离子电流。 FO喂养兔的心肌细胞的动作电位表现出更多的正平台电压,并且持续时间更长。这些变化可以通过这些心肌细胞中L型Ca电流(ICaL)的增加和瞬态向外电流(Ito)的减少来解释。 FO馈入并没有改变延迟整流器或整流器内向电流。免疫印迹实验表明,FO饲喂诱导的ICaL和Ito的变化与这些通道主要成孔亚基蛋白质水平的相应变化相关:Cav1.2升高,Kv4.2和Kv1.4降低。其他通道亚单位(Cav1.1,Kv4.3,KChIP2和ERG1)没有变化。我们得出的结论是,长期补充鱼油可以至少部分地通过改变心脏心肌细胞中通道亚单位的表达来影响心脏电活动。

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