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Process Optimization for Improved Phenolic Compounds Recovery from Walnut (Juglans regia L.) Septum: Phytochemical Profile and Biological Activities

机译:从核桃(Juglans Regia L.)隔膜中改进酚类化合物回收的过程优化:植物化学概况和生物活性

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摘要

Plant by-products can be valuable sources of polyphenol bioactive compounds. Walnut (Juglans regia L.) is a very important tree nut rich in biologically active molecules, but its septum was scarcely researched. Experimental data indicated a hypoglycemic effect of septum extracts, with almost no details about its phytochemical composition. The main objectives of this study were: (1) to obtain walnut septum (WS) extracts with high content in bioactive compounds and antioxidant activity based on an original experimental design; (2) characterization of the phytochemical profile of the WS extracts using HPLC-MS/MS; (3) evaluation of the biological potential of the richest polyphenolic WS extract. The variables of the experimental design were: extraction method (maceration and Ultra-Turrax extraction), temperature, solvent (acetone and ethanol), and percentage of water in the solvent. The first quantifiable responses were: total phenolic content, total flavonoid content, condensed tannins, and ABTS antioxidant capacity. The phytochemical profile of lyophilized extracts obtained by Ultra-Turrax extraction (UTE), the most efficient method, was further determined by HPLC-MS/MS analysis of individual polyphenolic and phytosterols compounds. It is the first study to assay the detailed composition of WS in hydrophilic and lipophilic compounds. The biological potential of the richest polyphenolic WS extract was also evaluated by FRAP and DPPH antioxidant capacity and the inhibition of tyrosinase, an enzyme involved in the browning in fruits and vegetables, skin wrinkles and aging. Conclusion: The phytochemical profile of the analyzed extracts proves that WS can be a valuable source of biologically active compounds (polyphenols) for food and/or pharmaceutical industry and warrant the continuation of current research in further evaluating its bioactive potential.
机译:植物副产品可以是多酚生物活性化合物的有价值的来源。核桃(Juglans Regia L.)是一种富含生物活性分子的非常重要的树坚果,但其隔膜几乎没有研究。实验数据表明隔膜提取物的降血糖作用,几乎没有关于其植物化学组成的细节。本研究的主要目的是:(1)基于原始实验设计,获得具有高含量的核桃隔膜(WS)提取物和基于原始实验设计的抗氧化活性; (2)使用HPLC-MS / MS的WS提取物的植物化学分布的表征; (3)评价最富有的多苯酚WS提取物的生物潜力。实验设计的变量是:提取方法(浸渍和超涡轮萃取),温度,溶剂(丙酮和乙醇),溶剂中的水百分比。第一个可量化的反应是:总酚类含量,总黄酮含量,浓缩的单宁和ABTS抗氧化能力。通过超大曲线萃取(UTE)获得的冻干提取物的植物化学谱通过单个多酚和植物甾醇的HPLC-MS / MS分析进一步确定了最有效的方法。第一研究可以在亲水和亲脂化合物中测定WS的详细组合物。还通过FRAP和DPPH抗氧化能力和酪氨酸酶的抑制来评估最富有的多酚WS提取物的生物潜力,涉及果实和蔬菜中的褐变,皮肤皱纹和老化。结论:分析提取物的植物化学概况证明,用于食品和/或制药行业的生物活性化合物(多酚)的有价值源,并担保进一步评估其生物活跃潜力的目前研究的延续。

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