Kavas Sena, Erbaşar Alara, Kurtulbaş Ebru, Fiorito Serena, Şahin Selin
Faculty of Engineering, Chemical Engineering Department, Istanbul University-Cerrahpasa, Istanbul, Turkey.
Department of Pharmacy, University "Gabriele d'Annunzio" Chieti-Pescara, Pescara, Italy.
Phytochem Anal. 2024 Dec;35(8):1803-1812. doi: 10.1002/pca.3434. Epub 2024 Aug 13.
The recovery process for bioactives from discarded by-products of the winemaking industry is of great value considering both environmental and economic aspects.
The goal of this study is to investigate the extraction of phenolic antioxidants from grape (Vitis vinifera) seeds by means of carboxylic acid-based deep eutectic solvents (DESs) in order to propose an environmentally friendly method based on a multivariate optimization approach.
Carboxylic acid-based DESs were designed with several molar ratios (1/1, 1/2, and 2/1). Two polyols (glycerol and ethylene glycol) were used as hydrogen bond donors, while formic acid, acetic acid, and propionic acid were selected as hydrogen bond acceptors. The process parameters (water content, extraction time, and solid mass) were analyzed to optimize the process through Box-Behnken design with response surface method, after determination of the best combination for the highest total phenolic content (TPC) and the antioxidant activity yields.
The maximum TPC yield (153.17 ± 0.003 mg-GAE/g-GS) and antioxidant activity yield (82.26 ± 0.004 mg-GAE/g-GS) were achieved by 50% water addition into the DES (ethylene glycol/acetic acid, 1/1), 85 sec extraction time, and 0.1 g grape seed.
从葡萄酒酿造行业废弃的副产品中回收生物活性物质的过程,从环境和经济两方面考虑都具有重要价值。
本研究的目的是研究通过基于羧酸的低共熔溶剂(DESs)从葡萄(酿酒葡萄)种子中提取酚类抗氧化剂,以便基于多变量优化方法提出一种环境友好型方法。
设计了几种摩尔比(1/1、1/2和2/1)的基于羧酸的DESs。使用两种多元醇(甘油和乙二醇)作为氢键供体,同时选择甲酸、乙酸和丙酸作为氢键受体。在确定了总酚含量(TPC)和抗氧化活性产率最高的最佳组合后,通过响应面法的Box-Behnken设计分析工艺参数(含水量、提取时间和固体质量)以优化工艺。
通过向DES(乙二醇/乙酸,1/1)中加入50%的水、85秒的提取时间和0.1克葡萄籽,实现了最大TPC产率(153.17±0.003毫克-没食子酸当量/克-葡萄籽)和抗氧化活性产率(82.26±0.004毫克-没食子酸当量/克-葡萄籽)。