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沙棘副产品的回收与增值利用:抗氧化活性及化学表征

Reclaim and Valorization of Sea Buckthorn () By-Product: Antioxidant Activity and Chemical Characterization.

作者信息

Luntraru Cristina Mihaela, Apostol Livia, Oprea Oana Bianca, Neagu Mihaela, Popescu Adriana Florina, Tomescu Justinian Andrei, Mulțescu Mihaela, Susman Iulia Elena, Gaceu Liviu

机构信息

Hofigal Export Import S.A., Research Development Patents Department, No. 2 Intrarea Serelor Street, District 4, 042124 Bucharest, Romania.

National Research & Development Institute for Food Bioresources-IBA Bucharest, 6 Dinu Vintila St., 0211202 Bucharest, Romania.

出版信息

Foods. 2022 Feb 4;11(3):462. doi: 10.3390/foods11030462.

Abstract

The by-product resulting from the production of the sea-buckthorn () juice may be a functional food ingredient, being a valuable source of bioactive compounds, such as polyphenols, flavonoids, minerals, and fatty acids. For checking this hypothesis, two extracts were obtained by two different methods using 50% ethyl alcohol solvent, namely through maceration-recirculation (E-SBM) and through ultrasound extraction (E-SBUS), followed by concentration. Next, sea-buckthorn waste (SB sample), extracts (E-SBM and E-SBUS samples) and the residues obtained from the extractions (R-SBM and R-SBUS samples) were characterized for the total polyphenols, flavonoid content, antioxidant capacity, mineral contents, and fatty acids profile. The results show that polyphenols and flavonoids were extracted better by the ultrasound process than the other methods. Additionally, the antioxidant activity of the E-SBUS sample was 91% higher (expressed in Trolox equivalents) and approximately 45% higher (expressed in Fe equivalents) than that of the E-SBM sample. Regarding the extraction of minerals, it was found that both concentrated extracts had almost 25% of the RDI value of K and Mg, and also that the content of Zn, Mn, and Fe is significant. Additionally, it was found that the residues (R-SBM and R-SBUS) contain important quantities of Zn, Cu, Mn, Ca, and Fe. The general conclusion is that using the ultrasound extraction method, followed by a process of concentrating the extract, a superior recovery of sea-buckthorn by-product resulting from the juice extraction can be achieved.

摘要

沙棘果汁生产过程中产生的副产品可能是一种功能性食品成分,是生物活性化合物的宝贵来源,如多酚、黄酮类化合物、矿物质和脂肪酸。为验证这一假设,使用50%乙醇溶剂通过两种不同方法获得了两种提取物,即浸渍循环法(E-SBM)和超声提取法(E-SBUS),随后进行浓缩。接下来,对沙棘废料(SB样品)、提取物(E-SBM和E-SBUS样品)以及提取后得到的残渣(R-SBM和R-SBUS样品)的总多酚、黄酮含量、抗氧化能力、矿物质含量和脂肪酸谱进行了表征。结果表明,超声提取法比其他方法能更好地提取多酚和黄酮类化合物。此外,E-SBUS样品的抗氧化活性(以Trolox当量表示)比E-SBM样品高91%,(以Fe当量表示)高出约45%。关于矿物质的提取,发现两种浓缩提取物的钾和镁含量几乎达到推荐每日摄入量(RDI)值的25%,锌、锰和铁的含量也很可观。此外,还发现残渣(R-SBM和R-SBUS)含有大量的锌、铜、锰、钙和铁。总体结论是,采用超声提取法,随后进行提取物浓缩过程,可以实现沙棘果汁提取副产品的更高回收率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/076e/8834190/1d426362fb47/foods-11-00462-g001.jpg

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