Antioxidant Properties of Methanolic and Acetone Extracts of Pictacia palaestina, Verbena triphylla and Nigella sativum

IF 0.2 Q4 PHARMACOLOGY & PHARMACY Asian Journal of Pharmaceutical Research and Health Care Pub Date : 2023-01-01 DOI:10.4103/ajprhc.ajprhc_61_23
NessrinGhazi Alabdallat, Hana Alanazi
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Abstract

Aims: The aim of the study was to estimate the antioxidant characteristics of methanolic and acetone extracts of Pistacia palaestina, Verbena triphylla, and Nigella sativa. Materials and Methods: The biochemical antioxidant assays that used were total phenols and flavonoids, total antioxidant capacity, ferric reducing power and 1,1-diphenyl-2-picrylhydrazyl (DPPH) free radical scavenging. Results: The maximum antioxidant capacity and the ferric-reducing power of the examined plant extracts were shown in P. palaestina/methanol whereas N. sativa L./methanol was the lowest. The maximum scavenging activity of DPPH was shown in N. sativa L./acetone (IC50 = 2688 μg/ml), followed by, V. triphylla/acetone (IC50 = 573.5 μg/ml), N. sativa/methanol (IC50 = 437.7 μg/ml), V. triphylla/methanol (IC50 = 64 μg/ml), and P. palaestina methanol and acetone extracts (IC50 = 9.5 μ/g) being the lowest. Conclusion: The findings with methanol extract of P. palaestina methanol shown the highest antioxidant property which and can be due to the presence of high quantity of phenols and flavonoids in the methanol extract of this plant; moreover, N. sativa acetone extract has maximum DPPH-free radical scavenging activity. This may be because the acetone extract demonstrated capabilities to scavenge radicals remarkably for Nigella sativa L seeds.
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牡丹、马鞭草和黑草甲醇和丙酮提取物的抗氧化性能
目的:研究巴黎木、马鞭草和黑草的甲醇和丙酮提取物的抗氧化特性。材料与方法:采用总酚类和总黄酮、总抗氧化能力、铁还原能力和清除1,1-二苯基-2-苦味酰肼(DPPH)自由基的生化抗氧化试验。结果:各植物提取物的抗氧化能力和还原铁的能力均以稻瘟病菌/甲醇提取物最高,而油菜/甲醇提取物最低。对DPPH的清除率以苜蓿/丙酮最高(IC50 = 2688 μg/ml),其次为三叶枯草/丙酮(IC50 = 573.5 μg/ml)、苜蓿/甲醇(IC50 = 437.7 μg/ml)、三叶枯草/甲醇(IC50 = 64 μg/ml),而苜蓿甲醇和丙酮提取物(IC50 = 9.5 μ/g)最低。结论:甲醇提取物的抗氧化性能最好,这可能是由于甲醇提取物中含有大量的酚类和黄酮类化合物;此外,苜蓿丙酮提取物对dpph自由基的清除活性最大。这可能是因为丙酮提取物对黑草种子具有明显的清除自由基的能力。
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