Circulation Journal
Online ISSN : 1347-4820
Print ISSN : 1346-9843
ISSN-L : 1346-9843
Experimental Investigation
Decreased Vagal Control Over Heart Rate in Rats With Right-Sided Congestive Heart Failure
Downregulation of Neuronal Nitric Oxide Synthase
Motoki Nihei, Jong-Kook Lee, Haruo Honjo, Kenji Yasui, Mahmud Uzzaman, Kaichiro Kamiya, Tobias Opthof, Itsuo Kodama
著者情報
ジャーナル フリー

2005 年 69 巻 4 号 p. 493-499

詳細
抄録
Background Parasympathetic drive is attenuated in heart failure, and resulting autonomic imbalance may increase the risk of sudden cardiac death. The anatomic site(s) and molecular mechanisms underlying this parasympathetic withdrawal are unknown. Methods and Results We examined the effects of pre- and post-ganglionic vagal nerve stimulation (VS) and acetylcholine (ACh) application on the heart rate of rats with right-sided congestive heart failure (CHF) induced by monocrotaline. Heart rate reduction in response to pre-ganglionic VS in CHF rats in vivo was significantly less than in controls. The suppression of spontaneous beating of isolated right atria including the whole sinoatrial (SA) node in response to post-ganglionic VS was significantly attenuated in CHF rats as well. In contrast, ACh application to the right atria resulted in a significantly larger suppression of spontaneous beating in CHF rats than controls. Proteins of neuronal nitric oxide synthase (nNOS) in the right atria were significantly decreased, whereas muscarinic (M2) receptor was significantly increased in CHF rats compared with controls. Conclusions Both pre-and post-ganglionic vagal nerve functions are diminished in CHF rats, whereas M2 receptor-mediated regulation of the SA node is upregulated. Downregulation of nNOS may be involved in this parasympathetic withdrawal. (Circ J 2005; 69: 493 - 499)
著者関連情報
© 2005 THE JAPANESE CIRCULATION SOCIETY
前の記事 次の記事
feedback
Top