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Crataegus extract prolongs action potential duration in guinea-pig papillary muscle
Insights
Crataegus extract prolongs cardiac action potential duration and delays the recovery of maximum upstroke velocity. These findings suggest Crataegus extract exhibits antiarrhythmic properties beneficial for heart conditions.
Area of Science:
- Cardiology
- Pharmacology
- Electrophysiology
Background:
- Crataegus extract is clinically used for moderate heart failure (NYHA II).
- Previous studies indicated Crataegus extract prolongs the refractory period in isolated guinea pig hearts.
Purpose of the Study:
- To investigate the electrophysiological mechanisms underlying the effects of Crataegus extract.
- To determine the impact of Crataegus extract on cardiac action potential and its components.
Main Methods:
- Conventional microelectrode techniques were employed on guinea pig papillary muscle.
- The study examined the effects of Crataegus extract (LI 132) on action potential duration and maximum upstroke velocity (Vmax).
Main Results:
- Crataegus extract significantly increased action potential duration at 20%, 50%, and 90% repolarisation levels.
- A notable increase in the time constant of Vmax recovery was observed, suggesting a Class I-like antiarrhythmic action.
- A slight reduction in Vmax was also noted.
Conclusions:
- Crataegus extract prolongs action potential duration and delays Vmax recovery in cardiac muscle.
- The findings support the hypothesis that Crataegus extract possesses antiarrhythmic properties.
Abstract:
Crataegus extract is used in cardiology for the treatment of moderate heart failure (NYHA II). Recently it was shown that Crataegus extract prolongs the refractory period in isolated perfused guinea pig hearts. In order to find out what mechanism is responsible for this prolongation of refractory period, we investigated the effects of Crataegus extract (LI 132) on the action potential of guinea pig papillary muscle with the help of conventional microelectrode techniques. Crataegus extract, when put in a concentration (10 mg/l) capable of inducing an inotropic effect of about 20%, significantly increased action potential duration at all investigated levels of repolarisation. Maximum prolongation was 8.5±2.3 ms, 12.5±2.6 ms and 11.7±2.9 ms at 20%, 50% and 90% repolarisation, respectively (control APD(90): 172±4 ms). Experiments on the time course of recovery of the maximum upstroke velocity (V(max)) of the action potential revealed that Crataegus extract increased the time constant of recovery of V(max) from 8.80±2.33 ms to 22.60±5.77 ms, indicating a weak Class I-like antiarrhythmic action. In addition, we observed a small reduction in V(max). In summary, our results show that Crataegus extract prolongs action potential duration and delays recovery of V(max). We, therefore, suggest that Crataegus extract possesses certain antiarrhythmic properties.
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