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采用 LC-HRMS 结合人体消化系统模型对爱琴海蜂粮中生物可利用酚类化合物进行定量分析。

Quantitative Analysis of Bioaccessible Phenolic Compounds in Aegean Bee Bread Using LC-HRMS Coupled with a Human Digestive System Model.

机构信息

Department of Analytical Chemistry, Faculty of Pharmacy, Bezmialem Vakıf University.

出版信息

Chem Biodivers. 2024 Mar;21(3):e202301497. doi: 10.1002/cbdv.202301497. Epub 2024 Feb 14.

Abstract

Bee bread, a valuable bee product that has recently attracted significant public interest as a nutritional supplement. The aim of this study was to evaluate the presence of phenolic compounds in bee bread samples from the Aegean Region and assess their bioaccessibility using a simulated human digestion model. Various extraction techniques, such as maceration, ultrasound-assisted extraction, and supercritical fluid extraction were employed to obtain extracts of bee bread. The antioxidant capabilities of these extracts were carried out using assays like DPPH⋅, ABTS⋅ , CUPRAC, and β-carotene linoleic acid bleaching, and their effectiveness was quantified through IC values. The bioaccessibility of phenolic compounds was analysed by using LC-HRMS in a simulated human digestive system using ethanol extracts obtained from bee bread samples of each season by ultrasound-assisted extraction, which has the highest antioxidant activity. In the Aegean bee bread, a total of 25 phenolic compounds which were major phenolics including quercetin, ascorbic acid, isorhamnetin, kaempferol, and hyperoside were identified and quantified. Also, ascorbic acid was the one of the most bioaccessible compounds with the bioaccessibility index 35.38 % for 2021, 16.79 % for 2022. These findings underscore the substantial transformation of the phenolic profile of bee bread as it traverses the human digestive system.

摘要

蜂粮,一种有价值的蜜蜂产品,最近作为一种营养补充品引起了公众的极大兴趣。本研究旨在评估爱琴海地区蜂粮样品中酚类化合物的存在,并使用模拟人体消化模型评估其生物可利用性。采用浸渍法、超声辅助提取法和超临界流体提取法等多种提取技术提取蜂粮提取物。使用 DPPH·、ABTS·、CUPRAC 和β-胡萝卜素亚油酸漂白等测定法测定这些提取物的抗氧化能力,并通过 IC 值定量其效果。使用 LC-HRMS 在模拟人体消化系统中分析酚类化合物的生物可利用性,方法是使用超声辅助提取从每个季节的蜂粮样品中获得乙醇提取物,该方法具有最高的抗氧化活性。在爱琴海的蜂粮中,总共鉴定和定量了 25 种酚类化合物,其中包括槲皮素、抗坏血酸、异鼠李素、山奈酚和金丝桃苷等主要酚类化合物。此外,抗坏血酸是最具生物可利用性的化合物之一,2021 年的生物利用度指数为 35.38%,2022 年为 16.79%。这些发现强调了酚类化合物在经过人体消化系统时的显著转化。

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