Use-dependent blocking action of newly developed lidocaine-analogs on maximum rate of rise of action potentials in guinea pig papillary muscle.
スポンサーリンク
概要
- 論文の詳細を見る
The mode of antiarrhythmic actions of the newly developed antiarrhythmic drugs, tocainide, mexiletine and SUN1165, which bear the N-2, 6-dimethylbenzene ring as a common structural unit, were examined by comparing the use-dependent blocking actions on the maximum rate of rise of action potentials (Vmax) in guinea pig ventricular muscle. The time course of the use-dependent reduction of Vmax after stimulation and its recovery after cessation of stimulation were fitted by double exponential curves to avoid the effects of the rapid stimulation (2Hz) on the level of the membrane diastolic potential.The onset rates constants of the use-dependent block were 0.29±0.07 per action potential for tocainide (10-4M), 0.07±0.02 (mean±SE, n=5) per action potential for SUN1165 (10-5M) and were too rapid to be accurately fitted for mexiletine (10-5M). The time constants of the Vmax recovery from the use-dependent block were prolonged to 0.67±0.32, 0.27±0.13 and 96±11 (mean±SE, n=5) sec in the presence of tocainide, mexiletine and SUN1165, respectively. These data indicate that tocainide and mexiletine should be classified as lidocaine-like drugs, while SUN1165 may be a quinidine-like drug which interacts with Na+ channels and has slower kinetics than lidocaine-like drugs.
- International Heart Journal刊行会の論文
著者
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Ishihara Takafumi
Department of Cardiology, Knasai Rosai Hospital
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Kodama Itsuo
Department Of Cardiovascular Research R.i.e.m. Nagoya University
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Toyama Junji
Department Of Cardiology Aichi Prefectural Owari Hospital Cardiovascular Center
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Yamada Kazuo
Department Of Architecture Faculty Of Engineering Aichi Institute Of Technoligy
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TOYAMA Junji
Department of Circulation and Respiration, the Research Institute of Environmental Medicine, Nagoya University
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HATTORI Yoshikazu
Department of Circulation and Respiration, the Research Institute of Environmental Medicine, Nagoya University
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KUSUNOKI Takahiro
Department of Circulation and Respiration, the Research Institute of Environmental Medicine, Nagoya University
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Yamada Kazuo
Department of Applied Molecular Chemistry, College of Industrial Technology, Nihon University
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