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与LQT3潜在的SCN5A突变中持续性钠电流相关的心室细胞模型中的动作电位和细胞内离子稳态变化。

Changes in action potentials and intracellular ionic homeostasis in a ventricular cell model related to a persistent sodium current in SCN5A mutations underlying LQT3.

作者信息

Christé G, Chahine M, Chevalier P, Pásek M

机构信息

INSERM, ADR Lyon, Lyon, France.

出版信息

Prog Biophys Mol Biol. 2008 Jan-Apr;96(1-3):281-93. doi: 10.1016/j.pbiomolbio.2007.07.023. Epub 2007 Aug 11.

DOI:10.1016/j.pbiomolbio.2007.07.023
PMID:17892895
Abstract

In LQT3 patients, SCN5A mutations induce ultraslow inactivation of a small fraction of the hNav1.5 current, i.e. persistent Na+ current (IpNa). We explored the time course of effects of such a change on the intracellular ionic homeostasis in a model of guinea-pig cardiac ventricular cell [Pasek, M., Simurda, J., Orchard, C.H., Christé, G., 2007b. A model of the guinea-pig ventricular cardiomyocyte incorporating a transverse-axial tubular system. Prog. Biophys. Mol. Biol., this issue]. Sudden addition of IpNa prevented action potential (AP) repolarization when its conductance (gpNa) exceeded 0.12% of the maximal conductance of fast INa (gNa). With gpNa at 0.1% gNa, the AP duration at 90% repolarization (APD90) was initially lengthened to 2.6-fold that in control. Under regular stimulation at 1 Hz it shortened progressively to 1.37-fold control APD90, and intracellular [Na+]i increased by 6% with a time constant of 106 s. Further increasing gpNa to 0.2% gNa caused an immediate increase in APD90 to 5.7-fold that in control, which decreased to 2.2-fold that in control in 30s stimulation at 1 Hz. At this time diastolic [Na+]i and [Ca2+]i were, respectively, 34% and 52% higher than in control and spontaneous erratic SR Ca release occurred. In the presence of IpNa causing 46% lengthening of APD90, the model cell displayed arrhythmogenic behaviour when external [K+] was lowered to 5 mM from an initial value at 5.4 mM. By contrast, when K+ currents IKr and IKs were lowered in the model cell to produce the same lengthening of APD90, no proarrhythmic behaviour was observed, even when external [K+] was lowered to 2.5 mM.

摘要

在长QT3综合征(LQT3)患者中,SCN5A基因突变会导致一小部分hNav1.5电流出现超慢失活,即持续性钠电流(IpNa)。我们在豚鼠心室肌细胞模型中探讨了这种变化对细胞内离子稳态影响的时间进程[帕塞克,M.,西穆尔达,J.,奥查德,C.H.,克里斯泰,G.,2007年b。包含横向-轴向管状系统的豚鼠心室肌细胞模型。《生物物理学与分子生物学进展》,本期]。当IpNa的电导(gpNa)超过快速钠电流(INa)最大电导(gNa)的0.12%时,突然添加IpNa会阻止动作电位(AP)复极化。当gpNa为0.1%gNa时,90%复极化时的动作电位时程(APD90)最初延长至对照值的2.6倍。在1Hz的常规刺激下,它逐渐缩短至对照APD90的1.37倍,细胞内[Na+]i增加6%,时间常数为106秒。将gpNa进一步增加至0.2%gNa会使APD90立即增加至对照值的5.7倍,在1Hz刺激30秒后降至对照值的2.2倍。此时,舒张期[Na+]i和[Ca2+]i分别比对照高34%和5%,并且出现了自发性不规则的肌浆网钙释放。在存在使APD90延长46%的IpNa的情况下,当外部[K+]从初始值5.4mM降至5mM时,模型细胞表现出致心律失常行为。相比之下,当模型细胞中的钾电流IKr和IKs降低以产生相同程度的APD90延长时,即使外部[K+]降至2.5mM,也未观察到促心律失常行为。

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