Mangoni Matteo E, Couette Brigitte, Marger Laurine, Bourinet Emmanuel, Striessnig Jörg, Nargeot Joël
Departement de Physiologie, Institut de Génomique Fonctionnelle, University of Montpellier I, CNRS UMR 5203, Montpellier F-34094, France.
Prog Biophys Mol Biol. 2006 Jan-Apr;90(1-3):38-63. doi: 10.1016/j.pbiomolbio.2005.05.003. Epub 2005 Jun 6.
The spontaneous activity of pacemaker cells in the sino-atrial node controls the heart rhythm and rate under physiological conditions. Compared to working myocardial cells, pacemaker cells express a specific array of ionic channels. The functional importance of different ionic channels in the generation and regulation of cardiac automaticity is currently subject of an extensive research effort and has long been controversial. Among families of ionic channels, Ca(2+) channels have been proposed to substantially contribute to pacemaking. Indeed, Ca(2+) channels are robustly expressed in pacemaker cells, and influence the cell beating rate. Furthermore, they are regulated by the activity of the autonomic nervous system in both a positive and negative way. In this manuscript, we will first discuss how the concept of the involvement of Ca(2+) channels in cardiac pacemaking has been proposed and then subsequently developed by the recent advent in the domain of cardiac physiology of gene-targeting techniques. Secondly, we will indicate how the specific profile of Ca(2+) channels expression in pacemaker tissue can help design drugs which selectively regulate the heart rhythm in the absence of concomitant negative inotropism. Finally, we will indicate how the new possibility to assign a specific gene activity to a given ionic channel involved in cardiac pacemaking could implement the current postgenomic research effort in the construction of the cardiac Physiome.
在生理条件下,窦房结中起搏细胞的自发活动控制着心律和心率。与工作心肌细胞相比,起搏细胞表达特定的离子通道阵列。目前,不同离子通道在心脏自律性产生和调节中的功能重要性是广泛研究的课题,并且长期以来一直存在争议。在离子通道家族中,钙通道被认为对起搏起着重要作用。事实上,钙通道在起搏细胞中大量表达,并影响细胞搏动频率。此外,它们受到自主神经系统活动的正负调节。在本手稿中,我们将首先讨论钙通道参与心脏起搏这一概念是如何被提出的,以及随后如何通过心脏生理学领域基因靶向技术的最新进展得以发展。其次,我们将指出起搏组织中钙通道表达的特定特征如何有助于设计在不伴有负性肌力作用的情况下选择性调节心律的药物。最后,我们将指出将特定基因活性赋予参与心脏起搏的特定离子通道的新可能性如何能够在构建心脏生理组的过程中推动当前的后基因组研究工作。