Institute of Food Technology, University of Novi Sad, Bulevar cara Lazara 1, Novi Sad, 21000, Serbia.
Institute for Medicinal Plant Research 'Dr Josif Pančić', Tadeuša Košćuška 1, Belgrade, 11000, Serbia.
Phytother Res. 2016 May;30(5):855-60. doi: 10.1002/ptr.5598. Epub 2016 Mar 1.
The aim of the present work was to examine if hydrogen peroxide treatment of sugar beet fibre that aimed at improving its physicochemical properties would impair its antioxidant potential. Three different sugar beet fibres were obtained from sugar beet - non-treated fibre (NTF) from sugar beet cossettes extracted with sulphurous acid, treated fibre (TF) from NTF treated with hydrogen peroxide in alkaline solution and commercially available Fibrex(®) . The antioxidant activity of extractable and non-extractable fibre fractions in ethanol/water mixture (80:20, v/v) of three fibre samples was estimated. Non-extractable fractions obtained after alkaline treatment of investigated fibres were much higher in phenolic compounds and possessed higher antioxidant potential than extractable fractions. Ferulic acid was proven to be the dominant phenolic acid. Regarding both extractable and non-extractable fractions, Fibrex(®) had the highest antioxidant activity in chemical tests, while NTF was superior in comparison with TF. Based on the results of Caco-2 cells-based test, all non-extractable fractions possessed potential for reactive oxygen species inhibition. Regarding the extractable fractions, only the TF manifested this effect.Copyright © 2016 John Wiley & Sons, Ltd.
本研究旨在探讨过氧氢处理旨在改善蔗渣纤维物理化学性能的同时是否会降低其抗氧化能力。从糖甜菜中提取的三种不同的糖甜菜纤维,分别是非处理纤维(NTF)、用亚硫酸处理的纤维(TF)和市售 Fibrex(®)。用乙醇/水混合物(80:20,v/v)提取三种纤维样品的可提取和不可提取纤维部分的抗氧化活性。经过碱性处理后,不可提取部分的酚类化合物含量更高,具有更高的抗氧化能力。阿魏酸被证明是主要的酚酸。对于可提取和不可提取部分,Fibrex(®)在化学测试中具有最高的抗氧化活性,而 NTF 则优于 TF。基于 Caco-2 细胞的测试结果,所有不可提取部分均具有抑制活性氧的潜力。对于可提取部分,只有 TF 表现出这种效果。版权所有 © 2016 年 John Wiley & Sons, Ltd.