University of Illinois , Urbana, Illinois 61801, United States.
J Agric Food Chem. 2011 Mar 9;59(5):1847-53. doi: 10.1021/jf103737y. Epub 2011 Feb 2.
It is of interest to discover new fermentable carbohydrate sources that function as prebiotics. This study evaluated the hydrolytic digestibility, fermentative capacity, and microbiota modulating properties of Temulose molasses, four hydrolyzed fractions of Temulose molasses, short-chain fructooligosaccharides (scFOS), and a yeast cell wall preparation (Safmannan). These substrates resisted in vitro hydrolytic digestion. Each substrate was fermented in vitro using dog fecal inoculum, and fermentation characteristics were quantified at 0 and 12 h. All Temulose molasses substrates decreased pH by at least 0.64 unit and resulted in greater (P < 0.05) butyrate and total short-chain fatty acid (SCFA) production compared to scFOS and Safmannan. Temulose molasses substrates resulted in higher (P < 0.01) or equal Bifidobacterium spp. concentrations compared to scFOS. Temulose molasses substrate and its fractions demonstrated prebiotic characteristics as indicated by low hydrolytic digestibility, high fermentability, and enhanced growth of microbiota considered to be beneficial to health.
发现具有益生元功能的可发酵碳水化合物新来源很有意义。本研究评估了 Temulose 糖蜜、Temulose 糖蜜的四个水解产物、短链果聚糖 (scFOS) 和酵母细胞壁制剂 (Safmannan) 的水解消化率、发酵能力和调节微生物群的特性。这些底物抵抗体外消化。使用犬粪便接种物在体外发酵每种底物,并在 0 和 12 小时量化发酵特性。所有 Temulose 糖蜜底物的 pH 值至少降低了 0.64 个单位,与 scFOS 和 Safmannan 相比,产生了更多的(P < 0.05)丁酸和总短链脂肪酸(SCFA)。与 scFOS 相比,Temulose 糖蜜底物导致双歧杆菌属浓度更高(P < 0.01)或相等。Temulose 糖蜜底物及其各部分表现出低水解消化率、高发酵性和增强有益微生物群生长的益生元特性。