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Role of If Density on Electrical Action Potential of Bio-engineered Cardiac Pacemaker: A Simulation Study

机译:I f 密度对生物工程心脏起搏器电动作电位的作用:模拟研究

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Due to the inevitable drawbacks of the implantable electrical pacemaker, the biological pacemaker was believed to be an alternative therapy for heart failure. Previous experimental studies have shown that biological pacemaker could be produced by genetically manipulating non-pacemaking cardiac cells by suppressing the inward rectifier potassium current (IK1) and expressing the hyperpolarization- activated current (If). However, the role of If in such bio-engineered pacemaker is not clear. In this study, we simulated the action potential of biological pacemaker cells by manipulating If-IK1 parameters (i.e., inhibiting IK1 as well as incorporating If) to analyze possible mechanisms by which different If densities control pacemaking action potentials. Our simulation results showed different pacing mechanism between the bioengineered pacemaking cells with and without If. In addition, it was shown that a greater If density might result in a slower pacing frequency, and excessive of it might produce an early-afterdepolarizations-like action potential due to a sudden release of calcium from sarcoplasmic reticulum into the cytoplasm. This study indicated that when IK1 was significantly suppressed, incorporating If may not enhance the pacing ability of biological pacemaker, but lead to abnormal dynamics of intracellular ionic concentration, increasing risks of dysrhythmia in the heart.
机译:由于植入式电起搏器不可避免的缺点,生物起搏器被认为是心力衰竭的替代疗法。先前的实验研究表明,通过抑制内向整流器钾电流,通过遗传操纵非起搏心脏细胞可以生产生物起搏器(I K1 )并表示超极化激活电流(I f )。但是,我的作用 f 在这种生物工程起搏器中尚不清楚。在这项研究中,我们通过操纵I f -一世 K1 参数(即,抑制I K1 以及合并我 f )分析不同的I可能的机制 f 密度控制起搏动作的潜力。我们的模拟结果显示,在有和没有I的情况下,生物工程起搏单元之间的起搏机制不同 f 。此外,还显示出更大的I f 密度可能会导致起搏频率降低,并且过多的钙可能会导致钙从肌浆网突然释放到细胞质中,从而产生类似去极化后的早期动作电位。这项研究表明,当我 K1 被显着压制,合并了我 f 可能不会增强生物起搏器的起搏能力,但会导致细胞内离子浓度异常动态,增加心脏心律失常的风险。

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