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首页> 外文期刊>Acta Scientarum Polonorum Technologia Alimentaria >Effects of solvents and extraction methods on the content and antiradical activity of polyphenols from fruits Actinidia arguta, Crataegus monogyna, Gaultheria procumbens and Schisandra chinensis
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Effects of solvents and extraction methods on the content and antiradical activity of polyphenols from fruits Actinidia arguta, Crataegus monogyna, Gaultheria procumbens and Schisandra chinensis

机译:溶剂和提取方法对猕猴桃,山楂,Cra蒲和五味子中多酚含量和抗自由基活性的影响

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Background. In line with the current tendency towards the production of the so-called safe foods, the use of environmentally-friendly methods for the extraction of polyphenols from fruits has been sought. Citric acid is a good solvent in the preparation of phenolic compounds for the food and pharmaceutical industries because it is a natural antioxidant and is non-toxic for the environment. Furthermore, new sources of polyphenols from fruit of orchard plants that are less known in Poland have been looked for. The aim of this study was? to assess the content and antiradical activity of polyphenolic compounds in fruit extracts, depending on the extraction method employed. In addition, the yield of extraction processes was assessed.Material and methods. The experimental materials were fruits of the following plants: Actinidia arguta, Crataegus monogyna, Gaultheria procumbens, Schisandra chinensis. For the extraction, aqueous solutions of citric acid (CAE) and methanol (ME) were used. The following were determined in fruit extracts: the content of total phenols (TP) and anthocyanins (A), and antiradical activity (DPPH and ABTS).Results. In general, the C. monogyna fruit extracts were distinguished by the highest TP and A content. The TP and A content was significantly higher in fruit extracts obtained with the CAE method than in the ones produced with the ME method. The highest mean A/TP ratio was determined for S. chinensis fruit extracts. The antiradical activity (DPPH and ABTS) in fruit extracts did not depend on an extraction method, but on fruit species. Overall, a higher yield of extraction processes was achieved for the CAE method than for the ME method.Conclusions. The present study indicates that the selected extraction methods are able to obtain polyphenolic extracts from fruits with a high antiradical activity and high yield. The use of citric acid in order to extract polyphenols from fruits may be an alternative to the conventional extraction method, while being eco-friendly and more effective than the latter.
机译:背景。符合当前生产所谓安全食品的趋势,已经寻求使用环境友好的方法从水果中提取多酚。柠檬酸是食品和制药行业酚类化合物制备中的良好溶剂,因为它是天然的抗氧化剂,对环境无毒。此外,人们正在寻找在波兰鲜为人知的果园植物果实中多酚的新来源。这项研究的目的是?取决于所采用的提取方法,以评估水果提取物中多酚化合物的含量和抗自由基活性。此外,还评估了提取过程的收率。材料和方法。实验材料是以下植物的果实:猕猴桃,山楂(Cretaegus monogyna),刺槐(Gaultheria procumbens),五味子。对于提取,使用柠檬酸(CAE)和甲醇(ME)的水溶液。测定了水果提取物中的以下物质:总酚(TP)和花色苷(A)的含量以及抗自由基活性(DPPH和ABTS)。通常,单孢梭菌果实提取物的特征在于最高的TP和A含量。通过CAE方法获得的水果提取物中的TP和A含量显着高于通过ME方法获得的水果提取物中的TP和A含量。确定了最高的S.chinensis水果提取物平均A / TP比。水果提取物中的抗自由基活性(DPPH和ABTS)不取决于提取方法,而取决于水果种类。总体而言,与ME方法相比,CAE方法获得了更高的提取工艺收率。本研究表明,所选的提取方法能够从水果中获得具有高抗自由基活性和高收率的多酚提取物。使用柠檬酸从水果中提取多酚可能是常规提取方法的替代方法,同时具有环保性,并且比后者更为有效。

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