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Encapsulation of betacyanins and polyphenols extracted from leaves and stems of beetroot in Ca(Ⅱ)-alginate beads: A structural study

机译:甜菜根叶和茎中提取的β-花青素和多酚在Ca(Ⅱ)-藻酸盐微珠中的包封:结构研究

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The aim of this work was to use the recovery of antioxidant compounds (betacyanin and polyphenols) derived from beetroot industrial wastes (stems and leaves), and their subsequent encapsulation in Ca(II)-alginate beads containing sugars, providing a detailed structural characterization of these systems determined by SAXS from the molecular (arrange of Ca(II)-alginate dimers) to the supramolecular (interconnection of the rods composing the hydrogel microstructure). Water extract contained significant quantities of betacyanin and polyphenol, which were retained in Ca(II)-alginate beads between 15 and 60%, depending on the formulation, retaining also the antioxidant activity. Both the inclusion of sugars as synthesis additives and beetroot extracts induced main structural changes, which can have counteracting effects. We revealed that, though being overlooked in most alginate encapsulation research, the presence of natural extracts prompts important structural changes in the alginate network, affecting key parameters which define the encapsulation performance in most of industrial and environmental applications. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是使用从甜菜根工业废料(茎和叶)中回收抗氧化剂化合物(甜菜碱和多酚),然后将其封装在含糖的Ca(II)-海藻酸珠中,以提供详细的结构特征。这些系统由SAXS从分子(Ca(II)-海藻酸二聚体的排列)到超分子(构成水凝胶微结构的棒的互连)确定。水提取物含有大量的花青素和多酚,它们保留在藻酸钙(II)珠粒中的比例在15%至60%之间,具体取决于配方,还保留了抗氧化活性。包括糖作为合成添加剂和甜菜根提取物都引起主要的结构变化,这可能具有抵消作用。我们发现,尽管在大多数藻酸盐封装研究中被忽视,但天然提取物的存在促使藻酸盐网络发生重要的结构变化,从而影响了关键参数,这些关键参数定义了大多数工业和环境应用中的封装性能。 (C)2018 Elsevier Ltd.保留所有权利。

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