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Extraction of anthocyanins from grape by-products assisted by ultrasonics, high hydrostatic pressure or pulsed electric fields: A comparison

机译:超声波,高静水压或脉冲电场辅助从葡萄副产物中提取花青素的比较

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摘要

Extracts from grape by-products contain bioactive substances such as anthocyanins which could be used as natural antioxidants or colourants. The effect of heat treatment at 70 pC combined with the effect of different emerging novel technologies such as ultrasonics (35 KHz), high hydrostatic pressure (600 MPa) (HHP) and pulsed electric fields (3 kV cm-p#) (PEF) showed a great feasibility and selectivity for extraction purposes. After 1 h extraction, the total phenolic content of samples subjected to novel technologies was 50% higher than in the control samples. Therefore, the application of novel technologies increased the antioxidant activity of the extracts being the extractions carried out with PEF four-fold, with HHP three-fold and with ultrasonics two-fold higher than the control extraction. In addition, the extraction of individual anthocyanins was studied showing a selective extraction based on the glucose moieties linked to the anthocyanidins; anthocyanin monoglucosides were better extracted by PEF, whereas the acylated ones were extracted by HHP. Industrial relevance: This study examines the feasibility of different emerging technologies such as high hydrostatic pressure, pulsed electric fields and ultrasonics as potential extraction methods for bioactive substances from grape by-products. Grape by-products represent a low-cost source of valuable bioactive compounds such as anthocyanins, with great industrial applications as colourants or nutraceuticals. The higher yields obtained in extractions carried out by high hydrostatic pressure and pulsed electric fields are of major interest from an industrial point of view, since solvent amounts were reduced and extraction times shortened. Thus, the combination of emerging technologies for extraction purposes and low-cost raw materials is an economical alternative to traditional extraction methods according to industry demands and a sustainable development.
机译:葡萄副产物中的提取物含有花青素等生物活性物质,可用作天然抗氧化剂或着色剂。在70 pC的热处理效果与不同的新兴技术相结合,例如超声波(35 KHz),高静水压(600 MPa)(HHP)和脉冲电场(3 kV cm-p#)(PEF)在萃取方面显示出极大的可行性和选择性。提取1小时后,采用新技术的样品的总酚含量比对照样品高50%。因此,新技术的应用提高了提取物的抗氧化活性,与对照提取物相比,提取物的抗氧化活性是PEF的四倍,HHP的三倍和超声波的两倍。另外,对单个花色苷的提取进行了研究,结果表明基于与花色苷相连的葡萄糖部分的选择性提取。 PEF提取花青素单糖苷更好,而HHP提取酰化的花青苷单糖苷。行业相关性:这项研究探讨了各种新兴技术的可行性,例如高静水压力,脉冲电场和超声波作为从葡萄副产品中提取生物活性物质的潜在方法。葡萄副产品是有价值的生物活性化合物(如花青素)的低成本来源,其在工业上的应用非常广泛,如着色剂或保健食品。从工业的角度来看,在高静水压和脉冲电场下进行的萃取中获得的更高收率是主要的关注点,因为减少了溶剂量并缩短了萃取时间。因此,根据工业需求和可持续发展,新兴的萃取技术和低成本原材料的结合是传统萃取方法的经济替代方案。

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