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菜粕中经高压提取的抗氧化多酚:温度和溶剂的影响。

Antioxidative Polyphenols of Canola Meal Extracted by High Pressure: Impact of Temperature and Solvents.

机构信息

Dept. of Food & Human Nutritional Sciences, Univ. of Manitoba, Winnipeg, Manitoba, R3T 2N2, Canada.

Richardson Centre for Functional Foods & Nutraceuticals, 196, Innovation Drive, Winnipeg, Manitoba, R3T 6C5, Canada.

出版信息

J Food Sci. 2019 Nov;84(11):3117-3128. doi: 10.1111/1750-3841.14799. Epub 2019 Oct 29.

Abstract

Canola meal, a by-product of oil pressing, is a rich source of phenolic antioxidants. However, its use in the food and feed sector is still limited by the need for greener, sustainable, and more cost-effective extraction methods. This study used accelerated solvent extraction (ASE) to enhance the extraction efficiency of the phenolic antioxidants. The high selectivity and short extraction time associated with ASE were ideal for obtaining high yields of these antioxidants. The structure-based activity of phenolic compounds may be influenced by the high pressure and temperature of the greener ASE process. The present study evaluated the effect of temperature (140, 160, and 180 °C) and pressure (1,500 psi) on the extraction and yield of phenolic compounds from canola meal as well as the solvent type (ethanol and methanol) and concentration (30%, 40%, 60%, and 70% v/v). Antioxidant activity was determined by 2,2-diphenyl-1-picrylhydrazyl, ferric reducing/antioxidant power assay, and ion-chelating activity. The highest yield of phenolic compounds was obtained with 70% methanol (20.72 ± 1.47 mg SAE/g DM [milligrams of sinapic acid equivalents per gram of dry matter]) and 70% ethanol (24.71 ± 2.77 mg SAE/g DM) at 180 °C temperature. A similar trend was observed for the antioxidant activity of the extracts and their total flavonoid content. The structure-based antioxidant activity of the extracts examined increased with the increase in the percentage of the extracting solvent (P > 0.05). This study established ASE as an efficient green method for extracting phenolic compounds from canola meal, with potential application for the production of natural bioactive compounds from underutilized agricultural by-products. PRACTICAL APPLICATION: ASE is an efficient eco-friendly method for extracting phenolic compounds from agricultural by-products such canola meal. Under the conditions of high pressure and temperature, ASE significantly improved the yields of phenolic compounds, sinapine, sinapic acid, and canolol. Under these conditions, water, as an extractant, was not effective in extracting sianpine. Moreover, it was much less effective than both 70% ethanol and 70% methanol in extracting sinapine or canolol. These phenolic compounds are of great interest as natural antioxidants for enhancing the shelf life of food products. They also represent new sources of neutraceuticals for improving human health.

摘要

菜粕是压榨油的副产品,是酚类抗氧化剂的丰富来源。然而,由于需要更环保、可持续和更具成本效益的提取方法,其在食品和饲料领域的应用仍然受到限制。本研究使用加速溶剂萃取(ASE)来提高酚类抗氧化剂的提取效率。ASE 具有高选择性和短提取时间,非常适合获得这些抗氧化剂的高产量。基于结构的酚类化合物的活性可能会受到更环保的 ASE 过程中的高压和高温的影响。本研究评估了温度(140、160 和 180°C)和压力(1500 psi)对菜粕中酚类化合物的提取和产率的影响,以及溶剂类型(乙醇和甲醇)和浓度(30%、40%、60%和 70%v/v)。抗氧化活性通过 2,2-二苯基-1-苦基肼、铁还原/抗氧化能力测定和离子螯合活性来确定。在 180°C 温度下,70%甲醇(20.72 ± 1.47 mg SAE/g DM[每克干物质中含有毫克芥子酸当量])和 70%乙醇(24.71 ± 2.77 mg SAE/g DM)获得了最高产率的酚类化合物。提取物的抗氧化活性及其总类黄酮含量也呈现出类似的趋势。随着提取溶剂百分比的增加(P > 0.05),提取物的结构基抗氧化活性增加。本研究确立 ASE 为从菜粕中提取酚类化合物的有效绿色方法,为利用未充分利用的农业副产品生产天然生物活性化合物提供了潜力。实际应用:ASE 是从农业副产品(如菜粕)中提取酚类化合物的有效环保方法。在高压和高温条件下,ASE 显著提高了酚类化合物、芥子碱、芥子酸和芥醇的产率。在这些条件下,水作为提取剂,在提取芥子碱方面效果不佳。此外,与 70%乙醇和 70%甲醇相比,水在提取芥子碱或芥醇方面的效果要差得多。这些酚类化合物作为天然抗氧化剂,可用于延长食品的保质期,具有很大的应用价值。它们也是改善人类健康的新型营养保健品来源。

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