Department of Medical Physiology, Division of Heart & Lungs, University Medical Center Utrecht, the Netherlands.
Neth Heart J. 2008;16(3):106-9. doi: 10.1007/BF03086127.
During cardiac maturation, increased exposure of the heart to circulating catecholamines correlates with increased conduction velocity and growth of the heart. We used an in vitro approach to study the underlying mechanisms of adrenergic stimulation induced changes in conduction velocity. By combining functional measurements and molecular techniques, we were able to demonstrate that the increased conduction velocity after beta-adrenergic stimulation is probably not caused by changes in intercellular coupling. Instead, RT-PCR experiments and action potential measurements have shown an increased excitability that may well explain the observed increase in conduction velocity. Apart from being relevant to cardiac maturation, our findings are relevant in the context of stem cells and cardiac repair. Preconditioning of stem cell derived cardiomyocytes may help to enhance electrical maturation of de novo generated cardiomyocytes and consequently reduce their proarrhythmogenic potential. (Neth Heart J 2008;16:106-9.).
在心脏成熟过程中,心脏暴露于循环儿茶酚胺的增加与传导速度的增加和心脏的生长相关。我们使用体外方法来研究肾上腺素能刺激引起的传导速度变化的潜在机制。通过结合功能测量和分子技术,我们能够证明β-肾上腺素能刺激后传导速度的增加可能不是由于细胞间耦联的变化引起的。相反,RT-PCR 实验和动作电位测量表明兴奋性增加,这很可能解释了观察到的传导速度增加。除了与心脏成熟有关外,我们的发现与干细胞和心脏修复有关。干细胞衍生的心肌细胞的预处理可能有助于增强新生成的心肌细胞的电成熟,从而降低其致心律失常的潜力。(Neth Heart J 2008;16:106-9.)。