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表乳糖的益生元特性。

Prebiotic properties of epilactose.

作者信息

Watanabe J, Nishimukai M, Taguchi H, Senoura T, Hamada S, Matsui H, Yamamoto T, Wasaki J, Hara H, Ito S

机构信息

Creative Research Initiative Sousei, Hokkaido University, Sapporo 001-0021, Japan.

出版信息

J Dairy Sci. 2008 Dec;91(12):4518-26. doi: 10.3168/jds.2008-1367.

Abstract

We recently reported that cellobiose 2-epimerase from Ruminococcus albus effectively converted lactose to epilactose. In this study, we examined the biological effects of epilactose on intestinal microbiota, bile acid metabolism, and postadministrative plasma glucose by animal tests. Dietary supplementation with epilactose or fructooligosaccharide (4.5% each) increased cecal wall weight and cecal contents and decreased the pH of the cecal contents in Wistar-ST rats. The number of total anaerobes tended to be greater in rats fed epilactose and fructooligosaccharide than in those fed the control diet. Lactobacilli and bifidobacteria were more numerous in rats fed epilactose and fructooligosaccharide diets than in those fed the control diet. Analysis of clone libraries of 16S rRNA suggests that supplementation with epilactose did not induce the proliferation of harmful bacteria belonging to classes Clostridia or Bacteroidetes. Epilactose, as well as fructooligosaccharide, inhibited the conversion of primary bile acids to secondary bile acids, which are suggested to be promoters of colon cancer. In addition, oral administration of epilactose did not elevate the plasma glucose concentration in ddY mice. These results clearly indicate that epilactose is a promising prebiotic. We also showed that cellobiose 2-epimerase converted lactose in cow milk and a spray-dried ultrafiltrate of cheese whey to epilactose. Cellobiose 2-epimerase may increase the value of dairy products by changing lactose to epilactose possessing prebiotic properties.

摘要

我们最近报道,来自白色瘤胃球菌的纤维二糖2-表异构酶能有效地将乳糖转化为表乳糖。在本研究中,我们通过动物试验研究了表乳糖对肠道微生物群、胆汁酸代谢和给药后血浆葡萄糖的生物学效应。在Wistar-ST大鼠的饮食中添加表乳糖或低聚果糖(各4.5%)可增加盲肠壁重量和盲肠内容物,并降低盲肠内容物的pH值。喂食表乳糖和低聚果糖的大鼠中总厌氧菌数量往往比喂食对照饮食的大鼠更多。喂食表乳糖和低聚果糖饮食的大鼠中乳酸菌和双歧杆菌比喂食对照饮食的大鼠更多。对16S rRNA克隆文库的分析表明,添加表乳糖不会诱导属于梭菌纲或拟杆菌纲的有害细菌增殖。表乳糖以及低聚果糖可抑制初级胆汁酸向次级胆汁酸的转化,而次级胆汁酸被认为是结肠癌的促进剂。此外,给ddY小鼠口服表乳糖不会提高血浆葡萄糖浓度。这些结果清楚地表明表乳糖是一种有前景的益生元。我们还表明,纤维二糖2-表异构酶可将牛奶中的乳糖以及奶酪乳清的喷雾干燥超滤物转化为表乳糖。纤维二糖2-表异构酶可能通过将乳糖转化为具有益生元特性的表乳糖来提高乳制品的价值。

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