Mucuna pruriens, an underutilized native legume of South India has been reported to have high levels of L-Dopa, and used in the treatment of Parkinson's disease. Cellular damage arising from reactive oxygen and nitrogen species is said to cause neurodegenerative disorders. Antioxidants could assuage this oxidative damage of tissue directly and/or indirectly by enhancing natural defenses and also scavenging the free radicals. In this context, the antioxidative potential of different germplasm of Mucuna species was analyzed. Assays were performed to evaluate the enzymatic and nonenzymatic antioxidants in the extracts. Methanolic extracts of Mucuna (black germplasm) yielded high levels dietary antioxidants viz., flavonoids, alkaloids, saponins, steroids and phlobotannins qualitatively. Tannins, total phenols, flavanoids, and steroids accounted for 13.60±1.8 tannic acid equivalents, 58.47±3.19 gallic acid equivalents, 23.7±3.12 quercetin equivalents, and 20.3±1.0 mg per 100 mg β-sitosterol equivalents, respectively. Percentage of scavenging activity against hydroxyl, superoxide anion, nitric oxide, and hydrogen peroxide radicals were 39.12%; 57.1%; 41.26%, and 25.68%, respectively. Reducing capacity (17.74%) was seen to concurrently increase with extract concentration. Catalase, glutathione reductase, and polyphenol oxidase activities were found to be 30.15; 26.6 and 42.5 μmol/mg of protein, respectively. The methanolic extract yielded the most potent levels of dietary antioxidants and exhibited high free-radical-scavenging activity.

译文

Mucuna pruriens是印度南部未充分利用的本地豆类,据报道其L-多巴含量很高,可用于治疗帕金森氏病。活性氧和氮引起的细胞损伤据说会导致神经退行性疾病。抗氧化剂可以通过增强自然防御能力并清除自由基来直接和/或间接缓解组织的这种氧化损伤。在这种情况下,分析了Mucuna物种不同种质的抗氧化潜力。进行测定以评估提取物中的酶和非酶抗氧化剂。Mucuna (黑色种质) 的甲醇提取物定性地产生了高水平的饮食抗氧化剂,即类黄酮,生物碱,皂苷,类固醇和phlobotanins。单宁,总酚,类黄酮和类固醇分别占13.60 ± 1.8鞣酸当量,58.47 ± 3.19没食子酸当量,23.7 ± 3.12槲皮素当量和20.3 ± 1.0 mg/100 mg β-谷甾醇当量。对羟基、超氧阴离子、一氧化氮和过氧化氢自由基的清除活性百分比分别39.12%; 57.1%; 41.26% 和25.68%。可见还原能力 (17.74%) 随着提取物浓度的增加而同时增加。发现过氧化氢酶,谷胱甘肽还原酶和多酚氧化酶活性30.15; 分别为26.6和42.5 μ mol/mg蛋白质。甲醇提取物可产生最有效的膳食抗氧化剂,并具有很高的自由基清除活性。

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