首页> 外文期刊>Journal of Agricultural and Food Chemistry >Evaluation of Enhanced Hygroscopicity, Bifidogenicity, and Anticariogenicity of Enzymatically Synthesized beta-Galactosyl-trehalose Oligosaccharides
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Evaluation of Enhanced Hygroscopicity, Bifidogenicity, and Anticariogenicity of Enzymatically Synthesized beta-Galactosyl-trehalose Oligosaccharides

机译:酶法合成的β-半乳糖基-海藻糖寡糖的增强的吸湿性,双歧化性和抗疟原性的评估

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摘要

beta-Galactosyl-trehalose oligosaccharides (beta-GTOs) were enzymatically prepared as a mixture of 6-beta-galactosyl-trehalose (1) and 4-beta-galactosyl-trehalose (2) with a 9:1 ratio (w/w). The beta-GTO mixture showed a highly enhanced hygroscopicity as compared to those of trehalose and other sugars used. At 72 h of incubation under 90% relative humidity and room temperature, it had a large increase in weight due to its moisture absorption, which was five times larger than that of trehalose, 1.9 times larger than that of sucrose, and 1.5 times larger than that of maltotriose. It was very effective in the growth promotion of Bifidobacteria, such as Bifidobacterium longum and Bifidobacterium bifidum, which was better than the growth promotion in the cases of trehalose and galactooligosaccharide. It also showed a highly anticariogenic property; it had only 10% cell proliferation of Streptococcus sobrinus for that of the sucrose control and 60% inhibition of insoluble glucan synthesis. Its effectiveness of inhibition was two and 1.5 times better than that of trehalose and one and two times than xylitol, respectively, against cell growth and glucan synthesis. Conclusively, the functionality of the beta-GTO in terms of hygroscopicity, bifidogenicity, and anticariogenicity was considerably improved as compared to that of trehalose. It is thus suggested that the beta-GTO might be applied as an effective humectant and prebiotic substitute with enhanced noncariogenicity in food applications.
机译:β-半乳糖基-海藻糖寡糖(β-GTO)以6-β-半乳糖基-海藻糖(1)和4-β-半乳糖基-海藻糖(2)的比例以9:1的比例(w / w)酶促制备。与使用的海藻糖和其他糖类相比,β-GTO混合物显示出高度增强的吸湿性。在90%相对湿度和室温下孵育72小时,由于吸湿性,它的重量大大增加,比海藻糖大五倍,比蔗糖大1.9倍,比蔗糖大1.5倍。麦芽三糖。它对长双歧杆菌和双歧双歧杆菌等双歧杆菌的生长促进非常有效,在海藻糖和低聚半乳糖的情况下,其生长促进效果更好。它也显示出很高的抗龋性。对于蔗糖对照而言,它仅具有10%的链球菌细胞增殖和60%的不溶性葡聚糖合成抑制作用。在细胞生长和葡聚糖合成方面,其抑制效果分别比海藻糖高出2倍和1.5倍,比木糖醇高1倍和2倍。最终,与海藻糖相比,β-GTO在吸湿性,双歧化性和抗致畸性方面的功能得到了极大的改善。因此,建议在食品应用中,β-GTO可以用作有效的保湿剂和益生元替代品,并具有非致龋性。

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