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首页> 外文期刊>American Journal of Physiology >Modulation of action potential by (Ca2+)i in modeled rat atrial and guinea pig ventricular myocytes.
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Modulation of action potential by (Ca2+)i in modeled rat atrial and guinea pig ventricular myocytes.

机译:(Ca2 +)i对模型大鼠心房和豚鼠心室肌​​细胞动作电位的调节。

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We simulated mechanisms that increase Ca2+ transients with two models: the Luo-Rudy II model for guinea pig (GP) ventricle (GP model) representing long action potential (AP) myocytes and the rat atrial (RA) model exemplifying myocytes with short APs. The interventions were activation of stretch-gated cationic channels, increase of intracellular Na+ concentration ([Na+]i), simulated bet-adrenoceptor stimulation, and Ca2+ accumulation into the sarcoplasmic reticulum (SR). In the RA model, interventions caused an increase of AP duration. In the GP model, AP duration decreased except in the simulated beta-stimulation where it lengthened APs as in the RA model. We conclude that the changes in the APs are significantly contributed by the increase of the Ca2+ transient itself. The AP duration is controlled differently in cardiac myocytes with short and long AP durations. With short APs, an increase of the Ca2+ transient promotes an inward current via Na+/Ca2+-exchanger lengthening the AP. This effect is similar regardless of the mechanism causing the increase of the Ca2+ transient. With long APs the Ca2+ transient increase decreases the AP duration via inactivation of the L-type Ca2+ current. However, L-type current increase (as with beta-stimulation) increases the AP duration despite the simultaneous Ca2+ transient augmentation. The results explain the dispersion of AP changes in myocytes with short and long APs during interventions increasing the Ca2+ transients.
机译:我们用两种模型模拟了增加Ca2 +瞬变的机制:代表长动作电位(AP)心肌细胞的豚鼠(GP)心室的Luo-Rudy II模型(GP模型)和代表具有短AP的心肌细胞的大鼠心房(RA)模型。干预措施包括激活门控性阳离子通道,增加细胞内Na +浓度([Na +] i),模拟赌注肾上腺素能受体刺激以及Ca2 +积累入肌浆网(SR)。在RA模型中,干预导致AP持续时间增加。在GP模型中,AP持续时间减少了,除了在模拟的β刺激中,它像RA模型一样延长了AP的时间。我们得出的结论是,APs的变化是由Ca2 +瞬态本身的增加显着贡献的。在AP持续时间短和长的心肌细胞中,AP持续时间受到不同的控制。对于短的AP,Ca2 +瞬变的增加会通过Na + / Ca2 +交换器加长AP来促进内向电流。无论引起Ca2 +瞬变增加的机制如何,这种效果都是相似的。对于较长的AP,Ca2 +瞬态增加会通过L型Ca2 +电流的失活而缩短AP持续时间。然而,尽管同时发生Ca2 +瞬时增加,但L型电流的增加(与β刺激一样)会增加AP持续时间。结果解释了在增加Ca2 +瞬变的干预过程中,长短AP的心肌细胞中AP变化的分散性。

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