The aging myopathy manifests itself with diastolic dysfunction and preserved ejection fraction. We raised the possibility that, in a mouse model of physiological aging, defects in electromechanical properties of cardiomyocytes are important determinants of the diastolic characteristics of the myocardium, independently from changes in structural composition of the muscle and collagen framework. Here we show that an increase in the late Na(+) current (INaL) in aging cardiomyocytes prolongs the action potential (AP) and influences temporal kinetics of Ca(2+) cycling and contractility. These alterations increase force development and passive tension. Inhibition of INaL shortens the AP and corrects dynamics of Ca(2+) transient, cell contraction and relaxation. Similarly, repolarization and diastolic tension of the senescent myocardium are partly restored. Thus, INaL offers inotropic support, but negatively interferes with cellular and ventricular compliance, providing a new perspective of the biology of myocardial aging and the aetiology of the defective cardiac performance in the elderly.
Late Na(+) current and protracted electrical recovery are critical determinants of the aging myopathy.
晚期 Na(+) 电流和延长的电恢复是老年性肌病的关键决定因素
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作者:Signore Sergio, Sorrentino Andrea, Borghetti Giulia, Cannata Antonio, Meo Marianna, Zhou Yu, Kannappan Ramaswamy, Pasqualini Francesco, O'Malley Heather, Sundman Mark, Tsigkas Nikolaos, Zhang Eric, Arranto Christian, Mangiaracina Chiara, Isobe Kazuya, Sena Brena F, Kim Junghyun, Goichberg Polina, Nahrendorf Matthias, Isom Lori L, Leri Annarosa, Anversa Piero, Rota Marcello
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2015 | 起止号: | 2015 Nov 6; 6:8803 |
| doi: | 10.1038/ncomms9803 | 研究方向: | 其它 |
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