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膳食多酚与不同植物细胞壁成分的结合选择性:定量和机制。

Binding selectivity of dietary polyphenols to different plant cell wall components: Quantification and mechanism.

机构信息

ARC Centre of Excellence in Plant Cell Walls, Centre for Nutrition and Food Sciences, Queensland Alliance for Agriculture and Food Innovation, The University of Queensland, St. Lucia, QLD 4072, Australia.

School of Agriculture and Food Sciences, The University of Queensland, St. Lucia, QLD 4072, Australia.

出版信息

Food Chem. 2017 Oct 15;233:216-227. doi: 10.1016/j.foodchem.2017.04.115. Epub 2017 Apr 20.

Abstract

Selected polyphenols exhibited binding selectivity to different cellulose-based composites and apple cell walls. For catechin, cellulose is the dominant binding component, whereas hemicelluloses (xyloglucan and arabinoxylan) apparently did not contribute to polyphenol adsorption in the presence of cellulose. In contrast, ferulic acid and cyanidin-3-glucoside bound to cellulose-based composites and apple cell walls with different affinities, showing that both electrostatic interactions and plant cell wall microstructure were important. Negatively-charged pectin-containing cell walls exhibited the most extensive binding of positively-charged cyanidin-3-glucoside, and bound negatively-charged ferulic acid least effectively. Langmuir binding isotherms predicted the maximum amount of adsorbed polyphenols to be in the range of 30-150% plant cell wall mass. NMR and CLSM analysis support the interactions between polyphenols and plant cell walls and show that although polyphenols are associated with plant cell walls under hydrated conditions, they are not immobilised on polymer surfaces.

摘要

选定的多酚对不同的基于纤维素的复合材料和苹果细胞壁表现出结合选择性。对于儿茶素,纤维素是主要的结合成分,而半纤维素(木葡聚糖和阿拉伯木聚糖)显然在纤维素存在的情况下对多酚吸附没有贡献。相比之下,阿魏酸和矢车菊素-3-葡萄糖苷以不同的亲和力结合到基于纤维素的复合材料和苹果细胞壁上,表明静电相互作用和植物细胞壁的微观结构都很重要。带负电荷的果胶细胞壁表现出对带正电荷的矢车菊素-3-葡萄糖苷最广泛的结合,而对带负电荷的阿魏酸的结合效果最差。Langmuir 结合等温线预测,吸附多酚的最大量在植物细胞壁质量的 30%-150%范围内。NMR 和 CLSM 分析支持多酚与植物细胞壁之间的相互作用,并表明尽管多酚在水合条件下与植物细胞壁相关联,但它们并没有固定在聚合物表面上。

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