Evaluation of the Antioxidant Activity of Aqueous and Hydro-Ethanolic Extracts of Ficus capensis, Newbouldia laevis and Carpolobia lutea

Jean-François Sibri, Joel Akakpo-Akue, O. C. Okou, T. Kplé
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Abstract

Scientific interest in the search for natural antioxidants (secondary metabolites) in medicinal plants has increased considerably in recent years, as free radicals are at the root of many diseases. The aim of this study was to evaluate the antioxidant activity of aqueous and hydroethanol extracts from the leaves of a basic plant product consisting of equal quantities of Ficus capensis, Newbouldia laevis and Carpolobia lutea. Quantitative determination of antioxidant activity was based on the flavonoid content of the base plant product. It was assessed by DPPH (2, 2-diphenyl-l-picrylhydrazyl) reduction tests and ferric ion reducing power (FRAP). The results of this study showed that the hydro-ethanol extract of the basic plant product is richer in flavonoids than that of the aqueous extract. In addition, the ICs50 of the aqueous and hydro-ethanolic extracts of the base plant product with DPPH were 2.13 ± 0.01 µg/mL and 1.19 ± 0.03 µg/mL respectively. In the FRAP test, the reducing powers of the hydroethanolic extract were generally higher than those of the aqueous extract at all concentrations tested. Particularly at the high concentration of 10 µg/mL, the reducing powers of the aqueous and hydroethanol extracts of the base plant product are 435.86 ± 1.29 µg/mL and 453.68 ± 0.71 µg/mL respectively. The hydroethanol extract therefore has better antioxidant activity than the aqueous extract.
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评估榕树、杏树和鲫鱼的水提取物和水乙醇提取物的抗氧化活性
近年来,在药用植物中寻找天然抗氧化剂(次生代谢物)的科学兴趣大大增加,因为自由基是许多疾病的根源。本研究的目的是评价由等量的红ficus capensis, Newbouldia laevis和Carpolobia lutea组成的基本植物产品的水提取物和氢乙醇提取物的抗氧化活性。根据基础植物产品的类黄酮含量定量测定其抗氧化活性。采用DPPH(2,2 -二苯基-l-苦基肼基)还原试验和铁离子还原力(FRAP)评价。本研究结果表明,基础植物产品的水乙醇提取物比水提取物含有更丰富的黄酮类化合物。DPPH对基础植物产物水提液和水醇提液的ICs50分别为2.13±0.01µg/mL和1.19±0.03µg/mL。在FRAP测试中,在所有测试浓度下,氢乙醇提取物的还原能力普遍高于水提取物。特别是在10µg/mL的高浓度下,基础植物产品的水提物和氢乙醇提物的还原力分别为435.86±1.29µg/mL和453.68±0.71µg/mL。因此,氢乙醇提取物比水提取物具有更好的抗氧化活性。
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