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Esterification Of Insoluble Fibres Using High-pressure Homogenisation And Their Potential Vitamin Carrying And Releasing Abilities

机译:利用高压均质作用对不溶性纤维进行酯化及其潜在的维他命携带和释放能力

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The esterification of carambola (starfruit) insoluble fibre (IF) and cellulose using high-pressure homogenisation without chemical catalyst was carried out as well as the evaluation of vitamin carrying and releasing abilities of the esterified fibres. Fourier transform infrared spectroscopic analyses showed that these fibres underwent structural changes and were esterified with lactic acid via a simple and fast process of high-pressure homogenisation. In vitro studies showed that the esterified fibres were capable of carrying vitamin E (~11.2 mg g~(-1) composite) and releasing nutrient slowly. In vivo studies further demonstrated that feeding the esterified carambola IF-vitamin composite could help maintain plasma vitamin E at relatively higher concentrations (~1.7- to 3.8-fold of the initial value) for better utilisation for at least 5 h. The results suggested that the esterified insoluble fibres, especially the esterified carambola IF, could be exploited as potential nutrient carriers in functional food applications and slow-release formulations.
机译:在没有化学催化剂的情况下,使用高压均质化对杨桃(杨桃)不溶性纤维(IF)和纤维素进行酯化,并评估了酯化纤维的维生素携带和释放能力。傅里叶变换红外光谱分析表明,这些纤维发生了结构变化,并通过简单且快速的高压均质过程被乳酸酯化。体外研究表明,酯化纤维具有维他命E(〜11.2 mg g〜(-1)复合物)的功能,并能缓慢释放营养。体内研究进一步表明,饲喂酯化的杨桃IF-维生素复合物可以帮助将血浆维生素E维持在相对较高的浓度(约为初始值的1.7到3.8倍),以便更好地利用至少5小时。结果表明,酯化的不溶性纤维,尤其是酯化的杨桃IF,可以用作功能性食品应用和缓释配方中的潜在营养载体。

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