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Calcium signalling silencing in atrial fibrillation

机译:心房颤动中的钙信号沉默

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Subcellular calcium signalling silencing is a novel and distinct cellular and molecular adaptive response to rapid cardiac activation. Calcium signalling silencing develops during short-termsustained rapid atrial activation as seen clinically during paroxysmal atrial fibrillation (AF). It is the first 'anti-arrhythmic' adaptive response in the setting of AF and appears to counteract the maladaptive changes that lead to intracellular Ca2+ signalling instability and Ca2+-based arrhythmogenicity. Calcium signalling silencing results in a failed propagation of the [Ca2+](i) signal to the myocyte centre both in patients with AF and in a rabbit model. This adaptive mechanism leads to a substantial reduction in the expression levels of calcium release channels (ryanodine receptors, RyR2) in the sarcoplasmic reticulum, and the frequency of Ca2+ sparks and arrhythmogenic Ca2+ waves remains low. Less Ca2+ release per [Ca2+] i transient, increased fast Ca2+ buffering strength, shortened action potentials and reduced L-type Ca2+ current contribute to a substantial reduction of intracellular [Na+]. These features of Ca2+ signalling silencing are distinct and in contrast to the changes attributed to Ca2+-based arrhythmogenicity. Some features of Ca2+ signalling silencing prevail in human AF suggesting that the Ca2+ signalling 'phenotype' in AF is a sum of Ca2+ stabilizing (Ca2+ signalling silencing) and Ca2+ destabilizing (arrhythmogenic unstable Ca2+ signalling) factors. Calcium signalling silencing is a part of the mechanisms that contribute to the natural progression of AF andmay limit the role of Ca2+-based arrhythmogenicity after the onset of AF.
机译:亚细胞钙信号沉默是一种新颖且不同的细胞和分子适应性对快速心脏活化的响应。在阵发性心房颤动期间临床上临床上观察到的短期性快速心房激活钙信号沉默在临床上发展(AF)。它是AF的设置中的第一个“抗心律失常”自适应响应,似乎抵消了导致细胞内Ca2 +信号传导不稳定性和Ca2 +基于心血发生性的不良变化。钙信号传导沉默导致[Ca2 +](i)信号在AF和兔模型中的患者中对肌细胞中心的失败传播。该自适应机制导致肌上网状钙释放通道(ryanodine受体,Ryr2)的表达水平的显着降低,并且Ca2 +火花和心律源Ca2 +波的频率保持低位。每[CA2 +] I瞬时,增加快速CA2 +缓冲强度,缩短动作电位和降低的L型CA2 +电流的CA2 +释放较少,有助于细胞内[NA +]的大量减少。 CA2 +信号传导沉默的这些特征是不同的,与归因于CA2 +基于心律发生的变化相反。 CA2 +信号沉默的一些特征在人AF中占上足,表明AF中的CA2 +信号传导'表型'是Ca2 +稳定(CA2 +信号沉默)和Ca2 +稳定(Arrhythmengenic不稳定CA2 +信号传导)因子的总和。钙信号沉默是有助于AF的自然进展的机制的一部分,并且可以限制AF的发作后Ca2 +基于心血炎的作用。

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