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Antiarrhythmic Effects of Supercritical Extract of Acmella oleracea in Rats: Electrophysiological Evidence and
Ana Paula de Souza E Silva1, Flávia Cristina Seabra Pires1, Maria Caroline Rodrigues Ferreira1
1LABTECS (Supercritical Technology Laboratory), PPGCTA (Graduate Program in Food Science and Technology), ITEC (Institute of Technology), UFPA (Federal University of Pará), Augusto Correa Street S/N, Guamá, Belém 66075-900, PA, Brazil.
Insights
A supercritical extract of Acmella oleracea (SEAO) shows significant antiarrhythmic effects in rats, comparable to lidocaine. This natural extract may offer a promising alternative for managing cardiac arrhythmias.
Area of Science:
- Pharmacology
- Cardiology
- Natural Product Chemistry
Background:
- Cardiovascular diseases (CVDs) are a leading global cause of death.
- Cardiac arrhythmias contribute significantly to CVD morbidity.
- Existing antiarrhythmic drugs have adverse effects, necessitating novel treatments, preferably natural.
Purpose of the Study:
- To evaluate the electrophysiological and antiarrhythmic effects of a supercritical extract of Acmella oleracea (SEAO).
- To investigate SEAO as a potential natural alternative for arrhythmia management.
Main Methods:
- Supercritical CO2 extraction of Acmella oleracea to obtain SEAO.
- Administration of SEAO (10, 20, 30 mg/kg) in rat models.
- Assessment of cardiac electrophysiology and epinephrine-induced arrhythmia using ECG.
Main Results:
- SEAO preserved cardiac intervals and sinus rhythm in rats.
- SEAO significantly reduced heart rate and R-R interval compared to epinephrine controls.
- SEAO demonstrated dose-dependent antiarrhythmic effects comparable to lidocaine.
Conclusions:
- SEAO exhibits significant antiarrhythmic properties.
- Acmella oleracea extract shows potential as a natural therapeutic agent for arrhythmias.
- Further pharmacological and clinical studies are warranted.
Abstract:
Cardiovascular diseases (CVDs) are the leading cause of death worldwide, with cardiac arrhythmias being one of the main factors contributing to morbidity. Currently, several established antiarrhythmic medications with proven efficacy are available. However, frequent use of these medications causes adverse effects with medium- and long-term use. This necessitates the development of new medications, preferably of natural origin and with ethnopharmacological relevance. In this sense, Acmella oleracea presents itself as an alternative for the treatment of arrhythmia, considering studies suggesting its cardioprotective effect. Therefore, the objective of this study was to evaluate the electrophysiological and antiarrhythmic effects of a supercritical extract of Acmella oleracea (SEAO) in rats. The extract was obtained by supercritical CO2 extraction at 70 °C and 320 bar, with an extract yield of 9.72 ± 0.26% (db) and a spilanthol yield of 25.91%. The extract was administered intraperitoneally at doses of 10, 15, and 20 mg/kg in two experimental models: (1) assessment of cardiac electrophysiology and (2) epinephrine-induced arrhythmia. Electrocardiogram (ECG) parameters were measured and compared with controls treated with epinephrine and lidocaine. The SEAO group maintained sinus rhythm and preserved cardiac intervals, with a significant reduction in heart rate and R-R interval compared to the epinephrine group. These findings demonstrate that SEAO exerts dose-dependent antiarrhythmic effects comparable to those of lidocaine. The results corroborate the potential use of SEAO as a natural alternative for arrhythmia management, encouraging further pharmacological and clinical studies.
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