Title of article :
Role of CaMKII and PKA in Early Afterdepolarization of Human Ventricular Myocardium Cell: A Computational Model Study
Author/Authors :
Dai, Ling Department of Biomedical Engineering - Zhejiang University - Hangzhou, China , Zang, Yunliang Department of Biomedical Engineering - Zhejiang University - Hangzhou, China , Zheng, Dingchang Faculty of Medical Science - Anglia Ruskin University - Chelmsford CM1 1SQ, UK , Xia, Ling Department of Biomedical Engineering - Zhejiang University - Hangzhou, China , Gong, Yinglan Department of Biomedical Engineering - Zhejiang University - Hangzhou, China
Pages :
8
From page :
1
To page :
8
Abstract :
Early afterdepolarization (EAD) plays an important role in arrhythmogenesis. Many experimental studies have reported that Ca2+/calmodulin-dependent protein kinase II (CaMKII) and 𝛽-adrenergic signaling pathway are two important regulators. In this study, we developed a modified computational model of human ventricular myocyte to investigate the combined role of CaMKII and 𝛽-adrenergic signaling pathway on the occurrence of EADs. Our simulation results showed that (1) CaMKII overexpression facilitates EADs through the prolongation of late sodium current’s (𝐼NaL) deactivation progress; (2) the combined effect of CaMKII overexpression and activation of 𝛽-adrenergic signaling pathway further increases the risk of EADs, where EADs could occur at shorter cycle length (2000 ms versus 4000 ms) and lower rapid delayed rectifier K+ current (𝐼Kr) blockage (77% versus 85%). In summary, this study computationally demonstrated the combined role of CaMKII and 𝛽-adrenergic signaling pathway on the occurrence of EADs, which could be useful for searching for therapy strategies to treat EADs related arrhythmogenesis.
Keywords :
CaMKII , EADs , 𝛽-adrenergic , Afterdepolarization
Journal title :
Computational and Mathematical Methods in Medicine
Serial Year :
2016
Full Text URL :
Record number :
2606334
Link To Document :
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