Marín-Manzano María Del Carmen, Hernandez-Hernandez Oswaldo, Diez-Municio Marina, Delgado-Andrade Cristina, Moreno Francisco Javier, Clemente Alfonso
Estación Experimental del Zaidín (CSIC), Consejo Superior de Investigaciones Científicas (CSIC), 18008 Granada, Spain.
Institute of Food Science Research (CIAL, CSIC-UAM), 28049 Madrid, Spain.
Foods. 2020 Jul 13;9(7):921. doi: 10.3390/foods9070921.
The interest for naturally-occurring oligosaccharides from plant origin having prebiotic properties is growing, with special focus being paid to supplemented products for infants. Currently, non-fructosylated α-galactooligosaccharides (α-GOS) from peas have peaked interest as a result of their prebiotic activity in adults and their mitigated side-effects on gas production from colonic bacterial fermentation. In this study, commercially available non-fructosylated α-GOS from peas and β-galactooligosaccharides (β-GOS) derived from lactose were fermented using fecal slurries from children aged 11 to 24 months old during 6 and 24 h. The modulatory effect of both GOS on different bacterial groups and bifidobacteria species was assessed; non-fructosylated α-GOS consumption was monitored throughout the fermentation process and the amounts of lactic acid and short-chain fatty acids (SCFA) generated were analyzed. Non-fructosylated α-GOS, composed mainly of manninotriose and verbascotetraose and small amounts of melibiose, were fully metabolized and presented remarkable bifidogenic activity, similar to that obtained with β-GOS. Furthermore, non-fructosylated α-GOS selectively caused an increase on the population of subsp. and In conclusion, non-fructosylated α-GOS could be used as potential ingredient in infant formula supplemented with prebiotic oligosaccharides.
对具有益生元特性的天然植物来源低聚糖的兴趣日益增长,尤其关注婴儿补充产品。目前,豌豆来源的非果糖基化α-低聚半乳糖(α-GOS)因其在成人中的益生元活性以及对结肠细菌发酵产气的副作用减轻而备受关注。在本研究中,使用11至24个月大儿童的粪便悬液对市售豌豆非果糖基化α-GOS和乳糖衍生的β-低聚半乳糖(β-GOS)进行6小时和24小时的发酵。评估了两种GOS对不同细菌群和双歧杆菌种类的调节作用;在整个发酵过程中监测非果糖基化α-GOS的消耗情况,并分析产生的乳酸和短链脂肪酸(SCFA)的量。主要由甘露三糖和毛蕊花四糖以及少量蜜二糖组成的非果糖基化α-GOS被完全代谢,并呈现出与β-GOS相似的显著双歧杆菌生成活性。此外,非果糖基化α-GOS选择性地导致亚种和亚种的数量增加。总之,非果糖基化α-GOS可作为补充益生元低聚糖的婴儿配方奶粉的潜在成分。