PHYTOCHEMICAL CONSTITUENTS AND ANTIOXIDANT ACTIVITY OF PERSEA AMERICANA LEAVE

Amuda Mutiu Olasunkanmi, Oderinlo Ogunyemi
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Abstract

Objective: Persea americana is a popular plant that is well known for its fruit, which is highly consumed due to its nutritional and medicinal values. The rich secondary metabolites content of P. americana creates an opportunity to utilize it as a functional food or standardized herbal preparations. The quality of a medicinal plant is determined by the active substances produced by the plant. Therefore, the purpose of the present study is to determine the secondary metabolites present in P. americana grown in uncultivated farmland in Ogbomoso, Oyo State Nigeria. Methods: The dried pulvurised leaves of P. americana from uncultivated farmland in Ogbomoso, Oyo State Nigeria were extracted with methanol by the maceration method and partitioned successively with solvents of increasing polarity. The extracts obtained were subjected to phytochemical screening and the total phenolics were determined spectrometrically using the folin–ciocalteu method. Results: The phytochemical screening showed that P. americana is rich in various secondary metabolites such as flavonoids, saponins, tannins, and alkaloids. The total phenolic content gave 500µg/g gallic acid equivalent. The total flavonoid content obtained was 250µg/g using quercetin as standard. The anti-oxidant assay of the crude extract showed a high activity of 89.05% at a concentration of 0.05g/ml. Conclusion: Total phenolic content of the plant is likely to be a key for determining the free radical scavenging and ROS reducing ability of the plant.
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美洲香叶的植物化学成分及抗氧化活性
目的:美洲波斯是一种受欢迎的植物,以其果实而闻名,由于其营养和药用价值而被大量消费。美洲胡杨丰富的次生代谢物含量为利用其作为功能性食品或标准化草药制剂创造了机会。药用植物的质量是由植物产生的活性物质决定的。因此,本研究的目的是确定在尼日利亚奥约州Ogbomoso的未开垦农田中生长的美洲假种植物中存在的次生代谢物。方法:采用甲醇浸渍法提取尼日利亚Oyo州Ogbomoso未开垦农田的美洲桉叶,并用极性递增的溶剂进行分级。对所得提取物进行植物化学筛选,并采用folin-ciocalteu法测定总酚类物质。结果:植物化学筛选结果表明,美洲藜富含黄酮类化合物、皂苷类化合物、单宁类化合物和生物碱等次生代谢产物。总酚含量相当于500µg/g没食子酸。以槲皮素为标准,得到的总黄酮含量为250µg/g。在0.05g/ml浓度下,粗提物抗氧化活性高达89.05%。结论:植物总酚含量可能是决定植物清除自由基和减少活性氧能力的关键。
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