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首页> 外文期刊>Journal of biomedical science. >Reduced Ca2+ transport across sarcolemma but enhanced spontaneous activity in cardiomyocytes isolated from left atrium-pulmonary veins tissue of myopathic hamster
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Reduced Ca2+ transport across sarcolemma but enhanced spontaneous activity in cardiomyocytes isolated from left atrium-pulmonary veins tissue of myopathic hamster

机译:Ca 2+ 跨肌膜转运减少,但自肌病仓鼠左心房-肺静脉组织分离的心肌细胞自发活性增强

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BackgroundSeveral lines of evidence point to a particularly important role of the left atrium (LA) in initiating and maintaining atrial fibrillation (AF). This role may be related to the location of pulmonary veins (PVs) in the LA. The aim of the present study was to investigate the action potential (AP) and ionic currents in LA-PV cardiomyocytes isolated from Bio14.6 myopathic Syrian hamsters (36-57 week-old) versus age-matched F1B healthy control hamsters.Methods and ResultsWhole-cell patch-clamp techniques were used to record AP in current-clamp mode and ionic currents in voltage-clamp mode. The results obtained show that in both healthy and myopathic LA-PV tissue spontaneously discharging cardiomyocytes can be found, but they are more numerous in myopathic (9/29) than in healthy hamsters (4/42, p < 0.05 by χ2 analysis). Myopathic myocytes have shorter AP duration (APD) with smaller ICa,L and INCX than the healthy control. The currents ITO, IK, IK1 and ICa,T are not significantly different in myopathic versus healthy cells.ConclusionsOur results indicate that in myopathic Syrian hamsters LA-PV cardiomyocytes are more prone to automatic rhythms. Also, they show altered electrophysiologic properties, which may be due to abnormal Ca2+ channels and may account for contractile dysfunction.
机译:背景有多种证据表明左心房(LA)在引发和维持房颤(AF)方面具有特别重要的作用。此作用可能与LA中肺静脉(PVs)的位置有关。本研究的目的是研究从Bio14.6肌病性叙利亚仓鼠(36-57周龄)与年龄匹配的F1B健康对照仓鼠分离的LA-PV心肌细胞中的动作电位(AP)和离子电流。结果采用全细胞膜片钳技术记录电流钳模式下的AP和电压钳模式下的离子电流。获得的结果表明,在健康和肌病性LA-PV组织中均可以发现自发放电的心肌细胞,但是在肌病性(9/29)中它们比健康仓鼠中的数量更多(4/42,通过χ2分析p <0.05)。与健康对照组相比,肌病性心肌细胞的AP持续时间(APD)较短,ICa,L和INCX较小。电流,ITO,IK,IK1和ICa,T在肌细胞与健康细胞中没有显着差异。结论我们的结果表明,在肌细胞叙利亚仓鼠中,LA-PV心肌细胞更容易出现自律性。而且,它们显示出改变的电生理特性,这可能是由于异常的Ca2 +通道所致,并且可能导致了收缩功能障碍。

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