从阿萨伊(E. oleracea)种子中提取酚类物质的新型萃取方法--能量分散引导萃取法(EDGE):提取物的化学特性、抗氧化性和生物可及性

IF 5.3 2区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY Food and Bioprocess Technology Pub Date : 2024-06-26 DOI:10.1007/s11947-024-03490-1
Nathalia Mendonça Conrado, Paulo Natan Alves dos Santos, Maria da Conceição Prudêncio Dutra, Laíza Canielas Krause, Allan dos Santos Polidoro, Marcos dos Santos Lima, Anaí Loreiro dos Santos, Elina Bastos Caramão
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引用次数: 0

摘要

阿萨伊(E. oleracea)是一种以健康功效著称的水果。其工业加工过程会产生大量的种子,这是一种富含酚类化合物的废物。在这项工作中,对这种残留物采用了三种萃取技术:动态浸渍(DM)、微波辅助萃取(MAE)和能量分散引导萃取(EDGE);最后一种是一种新型的样品制备技术。它评估了萃取物中酚类化合物的回收率。采用中心复合设计对萃取过程进行了研究,以获得富含酚类化合物的萃取物,其中 EDGE 萃取物的酚类化合物含量最高。根据这一结果,对该提取物的抗氧化能力、酚类概况(HPLC-DAD)和体外消化模型进行了研究。抗氧化能力分别为 6150 µmol Trolox/g(ORAC)、1.39 mmol Trolox/g(DPPH)和 4.45 mmol Eq Fe2 +/g(FRAP)。原花青素 B1(4.60 毫克/克)和 B2(1.05 毫克/克)以及儿茶素(1.62 毫克/克)是主要的酚类物质。生物可及性介于 6.20% 至 179.86% 之间;其中透析馏分中的茶褐藻酸、槲皮素 3-葡萄糖苷和原花青素 B1 具有生物可及性。这些显着的结果表明,EDGE 能有效回收生物活性化合物,使其仍可被肠道吸收。
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Energized Dispersive Guided Extraction (EDGE), a New Extractive Approach of Phenolics from Açaí (E. oleracea) Seeds: Chemical Characterization, Antioxidant Properties, and Bioaccessibility of the Extracts

Açai (E. oleracea) is a fruit known for its health benefits. Its industrial processing generates a large volume of seeds, a waste rich in phenolic compounds. In this work, three techniques of extraction were applied to this residue: dynamic maceration (DM), microwave-assisted extraction (MAE), and energized dispersive guided extraction (EDGE); this last one is a novel sample preparation technique. It evaluated the recovery of phenolic compounds in the extractions. The extraction processes were investigated using a central composite design to obtain an extract rich in phenolic compounds, being the EDGE’s extract exhibited the highest phenolic content. With this result, the antioxidant capacity, phenolic profile (HPLC–DAD), and in vitro digestion model were investigated in this extract. The antioxidant capacities found were 6150 µmol Trolox/g (ORAC), 1.39 mmol Trolox/g (DPPH), and 4.45 mmol Eq Fe2 + /g (FRAP). Procyanidin B1 (4.60 mg/g) and B2 (1.05 mg/g) and catechin (1.62 mg/g) were the prominent phenolics. Bioaccessibility ranged from 6.20 to 179.86%; being caftaric acid, quercetin 3-glucoside, and procyanidin B1 bioaccessible in dialyzed fraction. These remarkable results show the EDGE efficiency for recovering bioactive compounds that remain available for intestinal absorption.

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来源期刊
Food and Bioprocess Technology
Food and Bioprocess Technology 农林科学-食品科技
CiteScore
9.50
自引率
19.60%
发文量
200
审稿时长
2.8 months
期刊介绍: Food and Bioprocess Technology provides an effective and timely platform for cutting-edge high quality original papers in the engineering and science of all types of food processing technologies, from the original food supply source to the consumer’s dinner table. It aims to be a leading international journal for the multidisciplinary agri-food research community. The journal focuses especially on experimental or theoretical research findings that have the potential for helping the agri-food industry to improve process efficiency, enhance product quality and, extend shelf-life of fresh and processed agri-food products. The editors present critical reviews on new perspectives to established processes, innovative and emerging technologies, and trends and future research in food and bioproducts processing. The journal also publishes short communications for rapidly disseminating preliminary results, letters to the Editor on recent developments and controversy, and book reviews.
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