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首页> 外文期刊>Industrial Crops and Products >Synergistic, additive and antagonistic effects of Potentilla fruticosa combined with EGb761 on antioxidant capacities and the possible mechanism
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Synergistic, additive and antagonistic effects of Potentilla fruticosa combined with EGb761 on antioxidant capacities and the possible mechanism

机译:金露梅与银杏叶提取物761结合对抗氧化能力的协同,累加和拮抗作用及其可能机理

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Potentilla fruticosa and EGb 761 (Ginkgo biloba extracts) have been applied in traditional medicine and exhibit antioxidant properties. However, there is very little scientific evidence to support their use in combination. In this study, a bio-guided chromatographic fractionation strategy was used to obtain two effective fractions (C-3 and D-2) from the acetone crude extracts (A) of P. fruticosa leaves. Isobolographic analysis indicated that the combination of A+EGb had largely demonstrated synergism and 5:1 (A:EGb) displayed the best synergistic effect. In addition, C-3 + EGb exhibited a similar result as A+EGb, synergism in DPPH and ABTS assays, additive in FRAP assay. While D-2 + EGb showed only additive effect. The possible mechanism behind the synergism was explored by RP-HPLC. The changes in the total phenolic and flavonoids content were also investigated. While chemical composition did not seem to change in the mixture, no new peaks appeared in the chromatogram of C-3 + EGb mixture as compared to the individual chromatograms, no existing peaks disappeared either. Further studies were observed which may prove the possible mechanism responsible for the synergistic effect. Combinations of C-3 and 4 phenolic compounds in EGb ((+)-catechin, kaempferide, quercetin and isorhamnetin) were evaluated for their antioxidant capacities. Isorhamnetin showed synergism with C-3, and 5:1 exhibited the strongest synergism in DPPH (gamma=0.669) and ABTS (gamma=1.249), 1:1 in FRAP assays (gamma=1.385). Isorhamnetin was added to the other 6 phenolics in C-3 ((+)-catechin, caffeic acid, hyperoside, rutin, ellagic acid and quercetin), and the antioxidant capacity of mixtures was analyzed. For all combinations studied, caffeic acid + isorhamnetin displayed the greatest synergistic effect in various ratios by three antioxidant assays, the observed values were significantly higher than the expected values (P0.05) and 1:1 exhibited the strongest synergism in DPPH (gamma=0.711), ABTS (gamma=1.693) and FRAP (gamma=1.474) assays. Hyperoside + isorhamnetin also showed a slight synergism, but (+)-catechin + isorhamnetin exhibited an antagonism in DPPH assays. Thus, interaction of phytochemicals exist in extracts is likely responsible for the synergistic effects present in A + EGb, and caffeic acid + isorhamnetin may have played an important role. This study lends some credence to the concomitant use of P. fruticosa blended with EGb, which could be useful for developing new medicines and functional products from R fruticosa and EGb. (C) 2015 Elsevier B.V. All rights reserved.
机译:金露梅和银杏叶提取物761(银杏叶提取物)已应用于传统药物中,并具有抗氧化性能。但是,很少有科学证据支持将它们组合使用。在这项研究中,采用生物导引的色谱分离策略从金缕梅叶的丙酮粗提物(A)中获得两个有效馏分(C-3和D-2)。等效线描记法分析表明,A + EGb的组合已在很大程度上证明了协同作用,而5:1(A:EGb)则显示出最佳的协同作用。此外,C-3 + EGb的结果与A + EGb相似,在DPPH和ABTS分析中具有协同作用,在FRAP分析中具有累加作用。 D-2 + EGb仅表现出加和作用。 RP-HPLC探索了协同作用背后的可能机制。还研究了总酚和类黄酮含量的变化。尽管混合物中的化学成分似乎没有变化,但与单个色谱图相比,C-3 + EGb混合物的色谱图中没有出现新的峰,也没有现有的峰消失。观察到进一步的研究,可能证明了协同作用的可能机制。评价了CGb和C-3和4种酚类化合物在EGb((+)-儿茶素,山ka酯,槲皮素和异鼠李素)中的抗氧化能力。异鼠李素显示出与C-3的协同作用,而5:1在DPPH(γ= 0.669)和ABTS(γ= 1.249)中表现出最强的协同作用,在FRAP分析中(γ= 1.385)显示为1:1。将异鼠李素添加到C-3中的其他6种酚类中((+)-儿茶素,咖啡酸,高甙,芦丁,鞣花酸和槲皮素),并分析混合物的抗氧化能力。对于所研究的所有组合,通过三种抗氧化剂测定,咖啡酸+异鼠李素在各种比例下均表现出最大的协同作用,观察值明显高于预期值(P <0.05),并且1:1在DPPH中表现出最强的协同作用(γ= 0.711),ABTS(伽玛= 1.693)和FRAP(伽玛= 1.474)分析。 Hyperoside +异鼠李素也显示出轻微的协同作用,但是(+)-儿茶素+异鼠李素在DPPH分析中显示出拮抗作用。因此,提取物中存在的植物化学物质之间的相互作用可能是造成A + EGb中协同作用的原因,而咖啡酸+异鼠李素可能发挥了重要作用。这项研究为同时使用金银花与银杏叶提取物提供了一定的可信度,这可能对开发金银花和银杏叶的新药和功能性产品有用。 (C)2015 Elsevier B.V.保留所有权利。

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