Department of Food Science, Faculty of Food Science and Technology, Universiti Putra Malaysia, Selangor, Malaysia.
Department of Crop Science, Faculty of Agriculture and Food Sciences, Universiti Putra Malaysia, Bintulu Campus, Malaysia.
Food Res Int. 2021 Nov;149:110677. doi: 10.1016/j.foodres.2021.110677. Epub 2021 Aug 30.
Fructooligosaccharides can be produced by direct enzymatic conversion from sucrose-rich sugarcane syrup (SS) consisting of 58.93% sucrose yielding 21.28 g FOS/100 g sucrose. This study evaluated the prebiotic effect of unpurified/purified SS containing FOS for the modulation of the human intestinal microbial composition and short-chain fatty acid production. The unpurified and purified FOS substrates, which were a mixture of 1-kestose, nystose and 1-fructosylnystose, were supplemented into human faecal culture using a pH-controlled batch fermentation system and significantly increased the Bifidobacterium counts after 5 h fermentation, while Bacteroides/Prevotella counts were highest throughout 24 h fermentation. Meanwhile, Lactobacillus/Enterococcus exhibited a slight increase after 5 h fermentation before reaching a plateau afterwards. The steady Bacteroides/Prevotella growth and increased Bifidobacterium population promoted an increase in the production of short-chain fatty acids acetate (58 ± 2.70 mM), propionate (9.19 ± 5.94 mM) and butyrate (7.15 ± 2.28 mM). These results provide evidence that representative gut microbiota could utilise the enzymatically synthesised FOS to generate short-chain fatty acids as metabolites in pH-controlled conditions, thus FOS from SS are a potential prebiotic ingredient for foods and health drinks.
果寡糖可以通过直接酶促转化从富含蔗糖的甘蔗糖浆(SS)中生产,SS 由 58.93%的蔗糖组成,可产生 21.28 g FOS/100 g 蔗糖。本研究评估了含有 FOS 的未纯化/纯化 SS 的益生元作用,以调节人体肠道微生物组成和短链脂肪酸的产生。未纯化和纯化的 FOS 底物是 1-蔗果三糖、棉子糖和 1-果糖基棉子糖的混合物,使用 pH 控制批式发酵系统补充到人体粪便培养物中,在 5 h 发酵后双歧杆菌计数显著增加,而整个 24 h 发酵过程中拟杆菌/普雷沃氏菌计数最高。同时,在达到平台期之前,5 h 发酵后乳酸菌/肠球菌略有增加。稳定的拟杆菌/普雷沃氏菌生长和增加的双歧杆菌种群促进了短链脂肪酸乙酸盐(58 ± 2.70 mM)、丙酸盐(9.19 ± 5.94 mM)和丁酸盐(7.15 ± 2.28 mM)的产生增加。这些结果提供了证据表明,代表性肠道微生物可以利用酶法合成的 FOS 产生短链脂肪酸作为代谢物在 pH 控制条件下,因此 SS 中的 FOS 是食品和保健饮料的潜在益生元成分。