Up-regulated small-conductance calcium-activated potassium currents contribute to atrial arrhythmogenesis in high-fat feeding mice
EP Europace Journal

Abstract
Metabolic syndrome (MetS) is associated with arrhythmias and cardiovascular mortality. Arrhythmogenesis in MetS results from atrial structural and electrical remodelling. The small-conductance Ca2+-activated K+ (SK) currents modulate atrial repolarization and may influence atrial arrhythmogenicity. This study investigated the regulation of SK current perturbed by a high-fat diet (HFD) to mimic MetS.
Thirty mice were divided into two groups that were fed with normal chow (CTL) and HFD for 4 months. Electrocardiography and echocardiography were used to detect cardiac electrical and structure remodelling. Atrial action potential duration (APD) and calcium transient duration (CaTD) were measured by optical mapping of Langendorff-perfused mice hearts. Atrial fibrillation (AF) inducibility and duration were assessed by burst pacing. Whole-cell patch clamp was performed in primarily isolated atrial myocytes for SK current density. The SK current density is higher in atrial myocytes from HFD than in CTL mice (
Up-regulation of apamin-sensitive SK currents plays a partial role in the atrial arrhythmogenicity of HFD mice.
Contributors

Yi-Hsiung Lin
Author

Chia-Hao Kuo
Author

Shih-Jie Jhuo
Author

Ruo-Yun Shih
Author

Chun-Chieh Wu
Author

I Hsin Liu
Author

Tien-Chi Huang
Author

Ren-Ming Liu
Author

Tsung-Hsien Lin
Author

Ho-Ming Su
Author

Wen-Ter Lai
Author

Chien-Hung Lee
Author

Bin-Nan Wu
Author

Shien-Fong Lin
Author
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