Kuijpers Nico H L, Keldermann Rikkert H, ten Eikelder Huub M M, Arts Theo, Hilbers Peter A J
Department of Biomedical Engineering, Technische Universiteit Eindhoven, The Netherlands.
IEEE Trans Biomed Eng. 2006 Aug;53(8):1499-511. doi: 10.1109/TBME.2006.877801.
Atrial fibrillation is the most common cardiac arrhythmia. Structural cardiac defects such as fibrosis and gap junction remodeling lead to a reduced cellular electrical coupling and are known to promote atrial fibrillation. It has been observed that the expression of the hyperpolarization-activated current If is increased under pathological conditions. Recent experimental data indicate a possible contribution of If to arrhythmogenesis. In this paper, the role of If in action potential propagation in normal and in pathological tissue is investigated by means of computer simulations. The effect of diffuse fibrosis and gap junction remodeling is simulated by reducing cellular coupling nonuniformly. As expected, the conduction velocity decreases when cellular coupling is reduced. In the presence of If the conduction velocity increases both in normal and in pathological tissue. In our simulations, ectopic activity is present in regions with high expression of If and is facilitated by cellular uncoupling. We conclude that an increased If may facilitate propagation of the action potential. Hence, If may prevent conduction slowing and block. Overexpression of If may lead to ectopic activity, especially when cellular coupling is reduced under pathological conditions.
心房颤动是最常见的心律失常。诸如纤维化和缝隙连接重塑等心脏结构缺陷会导致细胞电耦合降低,并且已知会促进心房颤动。据观察,在病理条件下超极化激活电流If的表达会增加。最近的实验数据表明If可能对心律失常的发生有作用。在本文中,通过计算机模拟研究了If在正常和病理组织中动作电位传播中的作用。通过非均匀降低细胞耦合来模拟弥漫性纤维化和缝隙连接重塑的影响。正如预期的那样,当细胞耦合降低时传导速度会下降。在存在If的情况下,正常和病理组织中的传导速度都会增加。在我们的模拟中,If高表达区域存在异位活动,并且细胞解耦会促进这种活动。我们得出结论,If增加可能会促进动作电位的传播。因此,If可能会防止传导减慢和阻滞。If的过表达可能会导致异位活动,尤其是在病理条件下细胞耦合降低时。