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Alterations in physicochemical and functional properties of buckwheat straw insoluble dietary fiber by alkaline hydrogen peroxide treatment

机译:碱性过氧化氢处理荞麦秸秆不溶性膳食纤维的理化和功能性质变化

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摘要

To enhance the physicochemical and functional properties of insoluble dietary fiber (IDF) from buckwheat straw, we investigated the effects of alkaline hydrogen peroxide (AHP) treatment. Electron microscopy showed that the IDF had regular and compact tubes that turned into wrinkled lamellar products. After AHP treatment, X-ray diffraction indicated that the crystalline structure of the IDF was perturbed. And an undesirable decrease was observed in the content of hydroxybenzoic acid derivatives, hydroxycinnamic acid derivatives, flavonoids and the antioxidant capacity of IDF modified by AHP; however, the hydration properties (such as water holding capacity), α-amylase inhibition activity and glucose adsorption capacity of IDF were significantly enhanced by AHP. Furthermore, AHP led to a redistribution of monosaccharides in soluble dietary fiber and IDF, an interesting finding hinting at the mechanism and potential applications of AHP modification of IDF. In this study, AHP enhanced the physiological and functional properties of buckwheat straw IDF.
机译:为了增强荞麦秸秆中的不溶性膳食纤维(IDF)的理化和功能特性,我们研究了碱性过氧化氢(AHP)处理的效果。电子显微镜显示,IDF具有规则且紧凑的管,这些管变成起皱的层状产品。经过AHP处理后,X射线衍射表明IDF的晶体结构受到干扰。羟基苯甲酸衍生物,羟基肉桂酸衍生物,类黄酮的含量以及经AHP修饰的IDF的抗氧化能力均出现不希望的下降。但是,AHP显着提高了IDF的水合性能(如保水能力),α-淀粉酶抑制活性和葡萄糖吸附能力。此外,AHP导致单糖在可溶性膳食纤维和IDF中的重新分布,这是一个有趣的发现,暗示了AHP修饰IDF的机理和潜在应用。在这项研究中,AHP增强了荞麦秸秆IDF的生理和功能特性。

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