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TBX5/PITX2 不足引起的心房颤动的离子和细胞机制:来自人心房细胞数学模型的见解。

Ionic and cellular mechanisms underlying TBX5/PITX2 insufficiency-induced atrial fibrillation: Insights from mathematical models of human atrial cells.

机构信息

Auckland Bioengineering Institute, The University of Auckland, Auckland, New Zealand.

School of Computer Science and Technology, Harbin Institute Technology, Harbin, China.

出版信息

Sci Rep. 2018 Oct 23;8(1):15642. doi: 10.1038/s41598-018-33958-y.

Abstract

Transcription factors TBX5 and PITX2 involve in the regulation of gene expression of ion channels and are closely associated with atrial fibrillation (AF), the most common cardiac arrhythmia in developed countries. The exact cellular and molecular mechanisms underlying the increased susceptibility to AF in patients with TBX5/PITX2 insufficiency remain unclear. In this study, we have developed and validated a novel human left atrial cellular model (TPA) based on the ten Tusscher-Panfilov ventricular cell model to systematically investigate how electrical remodeling induced by TBX5/PITX2 insufficiency leads to AF. Using our TPA model, we have demonstrated that spontaneous diastolic depolarization observed in atrial myocytes with TBX5-deletion can be explained by altered intracellular calcium handling and suppression of inward-rectifier potassium current (I). Additionally, our computer simulation results shed new light on the novel cellular mechanism underlying AF by indicating that the imbalance between suppressed outward current I and increased inward sodium-calcium exchanger current (I) resulted from SR calcium leak leads to spontaneous depolarizations. Furthermore, our simulation results suggest that these arrhythmogenic triggers can be potentially suppressed by inhibiting sarcoplasmic reticulum (SR) calcium leak and reversing remodeled I. More importantly, this study has clinically significant implications on the drugs used for maintaining SR calcium homeostasis, whereby drugs such as dantrolene may confer significant improvement for the treatment of AF patients with TBX5/PITX2 insufficiency.

摘要

转录因子 TBX5 和 PITX2 参与离子通道基因表达的调控,与心房颤动(AF)密切相关,AF 是发达国家最常见的心律失常。TBX5/PITX2 不足患者对 AF 易感性增加的确切细胞和分子机制仍不清楚。在这项研究中,我们基于 ten Tusscher-Panfilov 心室细胞模型开发并验证了一种新型的人类左心房细胞模型(TPA),以系统研究 TBX5/PITX2 不足引起的电重构如何导致 AF。使用我们的 TPA 模型,我们证明了 TBX5 缺失的心房肌细胞中观察到的自发性舒张去极化可以通过改变细胞内钙处理和抑制内向整流钾电流(I)来解释。此外,我们的计算机模拟结果揭示了 AF 的新细胞机制,表明由于 SR 钙泄漏导致的抑制外向电流 I 和增加内向钠钙交换电流(I)之间的失衡导致自发性去极化。此外,我们的模拟结果表明,这些致心律失常触发因素可以通过抑制肌浆网(SR)钙泄漏和逆转重塑的 I 来潜在抑制。更重要的是,这项研究对用于维持 SR 钙动态平衡的药物具有重要的临床意义,例如,丹曲林等药物可能会显著改善 TBX5/PITX2 不足的 AF 患者的治疗效果。

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