V. L. Anusha, Anil Kumar Yerragopu, N. S. Kiran, A. Rajesh, Y. Sirisha, A. L. Harini
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The study included the isolation and preparation of A. lebbeck ethanol leaf extract (MEAL) and its administration at different doses (200 mg/kg and 400 mg/kg) to ISO-treated rats. Various parameters, including relative organ weight, cardiac biomarkers (cTnI, LDH, CK-MB), total proteins, oxidative stress markers (SOD, MDA), and histopathological changes, were assessed. The results revealed that ISO administration induced cardiac hypertrophy, increased serum biomarkers, and oxidative stress, indicating myocardial damage. Treatment with MEAL, especially at the higher dose (400 mg/kg), significantly mitigated these effects. MEAL administration reduced the heart-to-body weight ratio, normalised serum biomarkers, restored endogenous antioxidant enzyme levels, and showed a protective effect against structural damage in histopathological examination. In conclusion, A. lebbeck ethanol leaf extract demonstrated significant cardioprotective effects against ISO-induced myocardial infarction in rats. These findings suggest the potential of A. lebbeck as a natural therapeutic agent for preventing or ameliorating cardiac damage associated with stress-induced conditions. Further research is warranted to elucidate the specific mechanisms underlying its cardioprotective properties and explore its potential clinical applications.","PeriodicalId":510028,"journal":{"name":"Toxicology International","volume":"544 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-02-28","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Cardioprotective Potential of Albizzia lebbeck: Insights Isoproterenol-Induced Myocardial Infarction in Rats\",\"authors\":\"V. L. Anusha, Anil Kumar Yerragopu, N. S. Kiran, A. Rajesh, Y. Sirisha, A. L. 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Various parameters, including relative organ weight, cardiac biomarkers (cTnI, LDH, CK-MB), total proteins, oxidative stress markers (SOD, MDA), and histopathological changes, were assessed. The results revealed that ISO administration induced cardiac hypertrophy, increased serum biomarkers, and oxidative stress, indicating myocardial damage. Treatment with MEAL, especially at the higher dose (400 mg/kg), significantly mitigated these effects. MEAL administration reduced the heart-to-body weight ratio, normalised serum biomarkers, restored endogenous antioxidant enzyme levels, and showed a protective effect against structural damage in histopathological examination. In conclusion, A. lebbeck ethanol leaf extract demonstrated significant cardioprotective effects against ISO-induced myocardial infarction in rats. These findings suggest the potential of A. lebbeck as a natural therapeutic agent for preventing or ameliorating cardiac damage associated with stress-induced conditions. 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引用次数: 0
摘要
本研究探讨了 Albizzia lebbeck(Shirish)乙醇叶提取物对异丙肾上腺素(ISO)诱导的 Wistar 白化大鼠心肌梗死的保护潜力。心血管疾病(CVDs)是全球关注的主要健康问题,严重影响发病率和死亡率。A. lebbeck是一种具有药理活性的药用植物,但尚未对其心脏保护特性进行科学研究。该研究利用 ISO 诱导的心肌梗塞大鼠模型,这是一种研究心肌损伤预防效果的成熟实验方法。研究包括分离和制备莱贝克叶乙醇提取物(MEAL),并以不同剂量(200 毫克/千克和 400 毫克/千克)给 ISO 处理的大鼠服用。对各种参数进行了评估,包括相对器官重量、心脏生物标志物(cTnI、LDH、CK-MB)、总蛋白、氧化应激标志物(SOD、MDA)和组织病理学变化。结果显示,服用 ISO 会诱发心肌肥厚、血清生物标志物和氧化应激增加,表明心肌受损。使用MEAL(尤其是较高剂量(400毫克/千克))能显著减轻这些影响。MEAL能降低心脏与体重的比率,使血清生物标志物正常化,恢复内源性抗氧化酶的水平,并对组织病理学检查中的结构损伤具有保护作用。总之,A. lebbeck 乙醇叶提取物对 ISO 诱导的大鼠心肌梗死具有显著的心脏保护作用。这些研究结果表明,A. lebbeck 有可能成为一种天然治疗剂,用于预防或改善与压力诱发条件相关的心脏损伤。为了阐明其心脏保护特性的具体机制并探索其潜在的临床应用,我们有必要开展进一步的研究。
Cardioprotective Potential of Albizzia lebbeck: Insights Isoproterenol-Induced Myocardial Infarction in Rats
This study investigates the cardioprotective potential of Albizzia lebbeck (Shirish) ethanol leaf extract against Isoproterenol (ISO)-induced myocardial infarction in Wistar albino rats. Cardiovascular Diseases (CVDs) are a major global health concern, contributing significantly to morbidity and mortality. A. lebbeck, a medicinal plant with documented pharmacological activities, has not been scientifically studied for its cardioprotective properties. The research utilised a rat model of ISO-induced myocardial infarction, a well-established experimental approach to study preventive effects on myocardial damage. The study included the isolation and preparation of A. lebbeck ethanol leaf extract (MEAL) and its administration at different doses (200 mg/kg and 400 mg/kg) to ISO-treated rats. Various parameters, including relative organ weight, cardiac biomarkers (cTnI, LDH, CK-MB), total proteins, oxidative stress markers (SOD, MDA), and histopathological changes, were assessed. The results revealed that ISO administration induced cardiac hypertrophy, increased serum biomarkers, and oxidative stress, indicating myocardial damage. Treatment with MEAL, especially at the higher dose (400 mg/kg), significantly mitigated these effects. MEAL administration reduced the heart-to-body weight ratio, normalised serum biomarkers, restored endogenous antioxidant enzyme levels, and showed a protective effect against structural damage in histopathological examination. In conclusion, A. lebbeck ethanol leaf extract demonstrated significant cardioprotective effects against ISO-induced myocardial infarction in rats. These findings suggest the potential of A. lebbeck as a natural therapeutic agent for preventing or ameliorating cardiac damage associated with stress-induced conditions. Further research is warranted to elucidate the specific mechanisms underlying its cardioprotective properties and explore its potential clinical applications.