†Centre d'Analyses et de Recherche, Unité de Recherche Technologie et Valorisation Alimentaire (UR TVA), Faculté des Sciences, Université Saint-Joseph, B.P. 11-514 Riad El Solh, Beirut 1107 2050, Lebanon.
‡Sorbonne Universités, Université de Technologie de Compiègne, Laboratoire Transformations Intégrées de la Matière Renouvelable (UTC/ESCOM, EA 4297 TIMR), Centre de Recherche Royallieu, CS 60 319, Compiègne 60 203 CEDEX, France.
J Agric Food Chem. 2015 Apr 8;63(13):3387-93. doi: 10.1021/acs.jafc.5b00672. Epub 2015 Mar 26.
This work optimized the β-cyclodextrin (β-CD)-assisted extraction process of polyphenols from vine shoots. The efficiency of β-CD was compared to that of ethanol in terms of the quantity and antioxidant capacity (AC) of the extracted polyphenols. Response surface methodology permitted the optimization of the β-CD concentration, time, and temperature. The optimal polyphenol content (PC) [5.8 mg of gallic acid equivalent (GAE)/g of dry matter (DM)] and AC [3146 micromolar trolox equivalent per milliliter (μMTE)] were initially obtained with Syrah cultivar after an extraction of 48 h at 66.6 °C with a 37.7 mg/mL aqueous β-CD solvent. The same PC (5.8 mg of GAE/g of DM) was reached with 50% ethanol/water solvent after 1.65 h. However, a lower AC was found with ethanol (2000 μMTE) compared to β-CD. A comparison of the PC and AC of four different vine shoot cultivars was realized. Our results clearly show the capacity of β-CD to amplify polyphenol extraction from vine shoots.
本研究优化了β-环糊精(β-CD)辅助提取葡萄嫩枝中多酚的工艺。从多酚提取量和抗氧化能力(AC)两方面比较了β-CD 和乙醇的效率。响应面法优化了β-CD 浓度、时间和温度。在 66.6°C 下,用 37.7mg/mL 的β-CD 水溶液提取 48 小时,Syrah 品种的最佳多酚含量(PC)[5.8mg 没食子酸当量(GAE)/g 干物质(DM)]和 AC[3146 微摩尔 Trolox 当量/毫升(μMTE)]。而用 50%乙醇/水溶剂在 1.65 小时内即可达到相同的 PC(5.8mg GAE/g DM)。但与β-CD 相比,乙醇的 AC 较低(2000μMTE)。比较了四个不同葡萄嫩枝品种的 PC 和 AC。研究结果清楚地表明了β-CD 增强葡萄嫩枝中多酚提取的能力。