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采用连续高压和酶辅助提取绿色溶剂对越桔(Vaccinium vitis-idaea L.)果渣进行零废物生物炼制,制备功能性成分。

Zero waste biorefining of lingonberry (Vaccinium vitis-idaea L.) pomace into functional ingredients by consecutive high pressure and enzyme assisted extractions with green solvents.

机构信息

Department of Food Science and Technology, Kaunas University of Technology, Radvilėnų Rd. 19, LT-50254, Lithuania.

Department of Food Science and Technology, Kaunas University of Technology, Radvilėnų Rd. 19, LT-50254, Lithuania.

出版信息

Food Chem. 2020 Aug 30;322:126767. doi: 10.1016/j.foodchem.2020.126767. Epub 2020 Apr 7.

Abstract

Due to the lack of innovative valorization strategies, berry pomaces are a poorly utilized as a cheap source of valuable nutrients and phytochemicals. An effective biorefining scheme was developed to recover functional components from lingonberry pomace by consecutive supercritical CO (SFE-CO), pressurized liquid (PLE) and enzyme assisted (EAE) extractions. SFE-CO at optimized parameters yielded 11.8 g/100 g of lipophilic fraction, containing 43.3 and 37.4% of α-linolenic and linoleic fatty acids, respectively. The combined PLE with ethanol and water additionally recovered 61.8 g/100 g of polar constituents and reduced the antioxidant capacity of starting material by up to 94%. The major portion of the antioxidants (89-94% in different assays), anthocyanins (231 mg/100 g pomace) and proanthocyanidins (15.9 g/100 g pomace) was present in PLE-EtOH extract. Cyanidin-3-galactoside was the major anthocyanin (146.9 mg/100 g). High-pressure fractionation was more efficient for obtaining bioactive pomace constituents as compared with conventional and enzyme-assisted extractions.

摘要

由于缺乏创新的增值策略,浆果渣作为有价值营养物质和植物化学物质的廉价来源,尚未得到充分利用。通过连续的超临界 CO(SFE-CO)、加压液体(PLE)和酶辅助(EAE)提取,开发了一种从越橘渣中回收功能性成分的有效生物炼制方案。在优化的参数下,SFE-CO 可得到 11.8 g/100 g 的疏脂部分,分别含有 43.3%和 37.4%的α-亚麻酸和亚油酸。结合使用乙醇和水的 PLE 进一步回收了 61.8 g/100 g 的极性成分,并使起始材料的抗氧化能力降低了 94%。抗氧化剂(不同测定中为 89-94%)、花青素(231 mg/100 g 渣)和原花青素(15.9 g/100 g 渣)的主要部分存在于 PLE-EtOH 提取物中。矢车菊素-3-半乳糖苷是主要的花青素(146.9 mg/100 g)。与传统和酶辅助提取相比,高压分馏更有利于获得生物活性的渣成分。

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