Afifi Sherif M, Gök Recep, Eikenberg Ingo, Krygier Dennis, Rottmann Eric, Stübler Anne-Sophie, Aganovic Kemal, Hillebrand Silke, Esatbeyoglu Tuba
Institute of Food Science and Human Nutrition, Gottfried Wilhelm Leibniz Universität Hannover, Hannover, Germany.
Pharmacognosy Department, Faculty of Pharmacy, University of Sadat City, Sadat City, Egypt.
Front Nutr. 2023 Jun 6;10:1158473. doi: 10.3389/fnut.2023.1158473. eCollection 2023.
fruits are one of the most frequently counterfeited processed products in the world. In the juice production alone, the peels, divided into flavedo and albedo, are the main waste product. The extracts of this by-product are enriched with many bioactive substances. Newer extraction techniques generally have milder extraction conditions with simultaneous improvement of the extraction process.
This study presents a combinatorial approach utilizing data-independent acquisition-based ion mobility spectrometry coupled to tandem mass spectrometry. Integrating orthogonal collision cross section (CCS) data matching simultaneously improves the confidence in metabolite identification in flavedo and albedo tissues from . Furthermore, four different extraction approaches [conventional, ultrasonic, High Hydrostatic Pressure (HHP) and Pulsed Electric Field (PEF)] with various optimized processing conditions were compared in terms of antioxidant effects and flavonoid profile particularly polymethoxy flavones (PMFs).
A total number of 57 metabolites were identified, 15 of which were present in both flavedo and albedo, forming a good qualitative overlapping of distributed flavonoids. For flavedo samples, the antioxidant activity was higher for PEF and HHP treated samples compared to other extraction methods. However, ethyl acetate extract exhibited the highest antioxidant effects in albedo samples attributed to different qualitative composition content rather than various quantities of same metabolites. The optimum processing conditions for albedo extraction using HHP and PEF were 200 MPa and 15 kJ/kg at 10 kV, respectively. While, HHP at medium pressure (400 MPa) and PEF at 15 kJ/kg/3 kV were the optimum conditions for flavedo extraction.
Chemometric analysis of the dataset indicated that orange flavedo can be a valid source of soluble phenolic compounds especially PMFs. In order to achieve cross-application of production, future study should concentrate on how citrus PMFs correlate with biological engineering techniques such as breeding, genetic engineering, and fermentation engineering.
水果是世界上最常被假冒的加工产品之一。仅在果汁生产中,果皮(分为外果皮和内果皮)就是主要的废弃物。这种副产品的提取物富含多种生物活性物质。较新的提取技术通常具有更温和的提取条件,同时改进了提取过程。
本研究提出了一种组合方法,利用基于数据非依赖采集的离子淌度光谱与串联质谱联用。整合正交碰撞截面(CCS)数据匹配可同时提高对外果皮和内果皮组织中代谢物鉴定的可信度。此外,比较了四种不同的提取方法[传统方法、超声法、高静水压(HHP)和脉冲电场(PEF)]在各种优化处理条件下的抗氧化效果和类黄酮谱,特别是多甲氧基黄酮(PMF)。
共鉴定出57种代谢物,其中15种在外果皮和内果皮中均有存在,形成了分布类黄酮的良好定性重叠。对于外果皮样品,与其他提取方法相比,经PEF和HHP处理的样品抗氧化活性更高。然而,乙酸乙酯提取物在内果皮样品中表现出最高的抗氧化效果,这归因于不同的定性组成含量,而非相同代谢物的不同数量。使用HHP和PEF对内果皮进行提取的最佳处理条件分别为200MPa和15kJ/kg(10kV)。而中压(400MPa)的HHP和15kJ/kg/3kV的PEF是外果皮提取的最佳条件。
数据集的化学计量分析表明,橙子外果皮可以是可溶性酚类化合物特别是PMF的有效来源。为了实现生产的交叉应用,未来的研究应集中在柑橘PMF如何与生物工程技术如育种、基因工程和发酵工程相关联。