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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Increasing the dietary fiber contents in isomaltooligosaccharides by dextransucrase reaction with sucrose as a glucosyl donor
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Increasing the dietary fiber contents in isomaltooligosaccharides by dextransucrase reaction with sucrose as a glucosyl donor

机译:通过与蔗糖的葡萄糖基供体的葡萄糖反应增加异麦托隆核苷酸中的膳食纤维含量

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摘要

Isomaltooligosaccharides (IMOs) have been widely used as alternative sweeteners owing to their stabilities, low calorigenic, and prebiotic properties. The aim of this research was to improve the functionality of conventionally produced IMOs by increasing dietary fiber (DF) content with newly synthesized alpha-(1,6)-linkages through the dextransucrase reaction. To optimize the reaction conditions, various combinations of IMO and sucrose concentrations were applied as acceptor and donor molecules, respectively. Soluble DF content in the enzymatically-modified IMOs increased significantly with the initial substrate mixture of 10 % sucrose and 20% IMOs; both DF and IMO contents increased to 35 % and 54 %, respectively. It was clearly suggested a simple dextransucrase-involved bioprocess could be applied to increase the DF content to the IMOs produced via a conventional process without scarifying the original IMO contents. Thus, it will be expected that the DF-enhanced IMO products are potentially applicable as functional ingredients as sugar substitutes in the food industry.
机译:由于它们的稳定性,低热量和益生元特性,IsomaltoOnigosaccharide(IMOS)已被广泛用作替代甜味剂。本研究的目的是通过将新合成的α-(1,6) - 通过葡聚糖酶反应增加饮食纤维(DF)含量来改善常规产生的IMO的功能。为了优化反应条件,将IMO和蔗糖浓度的各种组合分别施加为受体和供体分子。酶促改性的IMOS中可溶性DF含量随着10%蔗糖的初始衬底混合物和20%IMOS而显着增加; DF和IMO内容分别增加到35%和54%。清楚地提出了一种简单的右旋胰酶涉及的生物过程可以应用于通过常规过程产生的DF含量,而不会造成原始IMO内容物。因此,预期DF增强的IMO产品可能适用于食品工业中的糖替代品的功能性成分。

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