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In silico analysis of the effects of fibroblasts coupling to atrial myocytes under conditions of atrial fibrillation remodeling

机译:在心房颤动重塑条件下成纤维细胞偶联与心房肌细胞的影响的硅分析

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Under chronic atrial fibrillation (cAF), cardiac tissue experiences electrophysiological and structural remodeling, including fibrosis. Fibrosis in the atrial tissue has an important impact on myocyte action potential (AP) and its propagation. The objective of this work is to explore fibloblasts characteristics and their impact on myocytes AP. Human atrial myocyte and fibroblast electrophysiology is simulated using mathematical models proposed by Koivumaki et al., including healthy and cAF remodeled myocytes. Cellular simulations were run using three different resting membrane potentials for the fibroblasts (RMPf and different numbers of coupled fibroblasts to a single myocyte in 0D and with different fibroblast densities in 1D. Results from single cell simulations show that myocyte's AP duration (APD) depends on both RMPf and the number of coupled fibroblasts. In 1D simulation, conduction velocity (CV) depends on RMPf and density along the strand. In conclusion, fibroblasts RMPf significantly alters myocyte AP and its propagation along cardiac tissue. Myocytes affected by cAF remodeling seem to be less sensitive to changes in fibroblasts RMPf.
机译:在慢性心房颤动(CAF)下,心脏组织经历电生理和结构重塑,包括纤维化。心房组织中的纤维化对肌细胞作用潜力(AP)具有重要影响及其繁殖。这项工作的目的是探索Fiblobrblasts特征及其对肌细胞AP的影响。使用Koivumaki等人提出的数学模型来模拟人心房肌细胞和成纤维细胞电生理学。,包括健康和CAF重新粘合的肌细胞。使用三种不同的静息膜电位来运行细胞模拟(RMPF和不同数量的偶联成纤维细胞在0D中的单个肌细胞和1D中的纤维细胞密度。单细胞仿真结果表明,肌细胞的AP持续时间(APD)取决于RMPF和偶联成纤维细胞的数量。在1D模拟中,传导速度(CV)取决于RMPF和沿着股线的密度。总之,成纤维细胞RMPF显着改变肌细胞AP及其沿心脏组织的繁殖。受CAF重塑影响的肌细胞似乎对成纤维细胞RMPF的变化不太敏感。

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