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利用商业酶制剂从甘蔗糖浆合成低聚果糖及其糖浆和糖浆粉的一些物理性质与抗氧化性能

Short-Chain Fructooligosaccharide Synthesis from Sugarcane Syrup with Commercial Enzyme Preparations and Some Physical and Antioxidation Properties of the Syrup and Syrup Powder.

作者信息

Kamchonemenukool Sudthida, Buasum Warathep, Weerawatanakorn Monthana, Thongsook Tipawan

机构信息

Department of Agro-Industry, Faculty of Agriculture Natural Resources and Environment, Naresuan University, Phitsanulok 65000, Thailand.

出版信息

Foods. 2023 Jul 29;12(15):2895. doi: 10.3390/foods12152895.

DOI:10.3390/foods12152895
PMID:37569164
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10417662/
Abstract

Short-chain fructooligosaccharides (sc-FOS) are prebiotics beneficial to human health, which can be synthesized from raw material containing a high sucrose content. Sugarcane syrup (SS) without molasses removal contains sucrose as a major sugar and is a rich source of several bioactive compounds. The aim of this study is to investigate factors affecting sc-FOS synthesis from SS using commercial enzyme preparations containing fructosyltransferase activity as biocatalysts. sc-FOS content increased significantly as the sucrose concentration of SS in the reaction mixture increased up to 40% (/). Changes in carbohydrate compositions during the transfructosylating reaction of a pure sucrose solution and SS prepared from the two sugarcane cultivars Khon Kaen 3 and Suphanburi 50, catalyzed by Pectinex Ultra SP-L and Viscozyme L, showed similar profiles. Both enzymes showed a high ability to transfer fructosyl moieties to produce sc-FOS and a plateau of the total sc-FOS concentration was observed after 4 h of reaction time. For the pure sucrose solution and SS (Suphanburi 50), Viscozyme showed a superior ability to convert sucrose to Pectinex, with a higher sc-FOS yield (g FOS/100 g of initial sucrose), GF2 or 1-kestose yield (g GF2/g of initial sucrose) and GF3 or nystose yield (g GF3/g of initial sucrose). sc-FOS syrup (FOS SS) and the foam-mat-dried syrup powder prepared from SS and FOS SS, respectively, contained a high total phenolic content and possessed higher antioxidant activities than those prepared from pure sucrose, but contained lower calories.

摘要

短链低聚果糖(sc-FOS)是对人体健康有益的益生元,可由高蔗糖含量的原料合成。未去除糖蜜的甘蔗糖浆(SS)以蔗糖为主要糖分,是多种生物活性化合物的丰富来源。本研究的目的是使用含有果糖基转移酶活性的商业酶制剂作为生物催化剂,研究影响从SS合成sc-FOS的因素。随着反应混合物中SS的蔗糖浓度增加至40%(/),sc-FOS含量显著增加。在由Pectinex Ultra SP-L和Viscozyme L催化的纯蔗糖溶液以及由两个甘蔗品种孔敬3号和素攀武里50号制备的SS的转果糖基化反应过程中,碳水化合物组成的变化呈现出相似的特征。两种酶都具有将果糖基部分转移以产生sc-FOS的高能力,并且在反应4小时后观察到总sc-FOS浓度达到平稳状态。对于纯蔗糖溶液和SS(素攀武里50号),Viscozyme表现出比Pectinex更高的将蔗糖转化的能力,具有更高的sc-FOS产量(g FOS/100 g初始蔗糖)、GF2或蔗果三糖产量(g GF2/g初始蔗糖)以及GF3或潘糖产量(g GF3/g初始蔗糖)。分别由SS和FOS SS制备的sc-FOS糖浆(FOS SS)和泡沫垫干燥糖浆粉含有较高的总酚含量,并且比由纯蔗糖制备的糖浆具有更高的抗氧化活性,但热量更低。

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