Carvedilol suppresses ventricular arrhythmia in a pressure over-load rabbit model through relieving transmural dispersion of repolarization with long-term administration
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Carvedilol suppresses ventricular arrhythmia in a pressure over-load rabbit model through relieving transmural dispersion of repolarization with long-term administration
Carvedilol suppresses ventricular arrhythmia in a pressure over-load rabbit model through relieving transmural dispersion of repolarization with long-term administration
解放军医学杂志(英文版)2012年27卷第4期 页码:198-209
Affiliations:
1. Department of Cardiology, Tianjin Chest Hospital
2. Department of Cardiology, First Hospital of Xi'an Jiaotong University
Author bio:
Funds:
DOI:
中图分类号:R-332
纸质出版:2012
Accepted:
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Carvedilol suppresses ventricular arrhythmia in a pressure over-load rabbit model through relieving transmural dispersion of repolarization with long-term administration[J]. 解放军医学杂志(英文版), 2012,27(4):198-209.
[1]Yao Qinghai,Cui Changcong,Wu Shangqin,Shan Sun,Cheng Aijuan,Li Peng.Carvedilol suppresses ventricular arrhythmia in a pressure over-load rabbit model through relieving transmural dispersion of repolarization with long-term administration[J].Journal of Medical Colleges of PLA,2012,27(04):198-209.
Carvedilol suppresses ventricular arrhythmia in a pressure over-load rabbit model through relieving transmural dispersion of repolarization with long-term administration[J]. 解放军医学杂志(英文版), 2012,27(4):198-209.DOI:
[1]Yao Qinghai,Cui Changcong,Wu Shangqin,Shan Sun,Cheng Aijuan,Li Peng.Carvedilol suppresses ventricular arrhythmia in a pressure over-load rabbit model through relieving transmural dispersion of repolarization with long-term administration[J].Journal of Medical Colleges of PLA,2012,27(04):198-209.DOI:
Carvedilol suppresses ventricular arrhythmia in a pressure over-load rabbit model through relieving transmural dispersion of repolarization with long-term administration
摘要
Abstract
Objective: To investigate the effects of carvedilol (CVD) on transmural dispersion of repolarization(TDR) and arrhythmia in pressure over-load rabbits. Methods: Left ventricular hypertrophied(LVH) rabbit models were established by pressure over-load; All animal models were assigned into CVD group or LVH group randomly. The action potentials of endocardium
epicardium and transmural ECG of arterially perfused left ventricular preparations were recorded concurrently. Action potential duration (APD)
TDR
ventricular arrhythmia and ultrasonic parameters
ratio of LVM to body weight (LVMI) were compared correspondingly. The stable plasma concentration of carvedilol in CVD group was detected by HPLC. APD
TDR and arrhythmia of LVH models were compared just preor post-perfusion with stable concentration of CVD. Results: In Contrast with values in LVH group
LVEFof CVD group were significantly elevated while the LVMI was remarkably reduced
TDRs were significantly shortened
and ratio of ventricular arrhythmia was lowered remarkably. No significant difference of APD
TDR and ratio of arrhythmia was found pre- or post-perfusion at stable plasma concentration of CVD. Conclusion: CVD can ameliorate the structure and function of pressure over-load ventricles; CVD contributes to the improvement of ventricular arrhythmia associated with its long-term effect on APD
TDR shortening
whereas has nothing to do with its transient function on ionic channel blockade.
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