Xing Zhuqing, Tang Wei, Geng Weitao, Zheng Yongna, Wang Yanping
Key Laboratory of Food Nutrition and Safety, Ministry of Education, Food Engineering and Biotechnology Institute, Tianjin University of Science & Technology, Tianjin, 300457, China.
Appl Microbiol Biotechnol. 2017 Mar;101(6):2467-2477. doi: 10.1007/s00253-016-7956-z. Epub 2016 Dec 1.
Lactobacillus kefiranofaciens XL10, with a high yield of extracellular polysaccharide (EPS), is isolated from Tibetan kefir grain and benefits the health of human beings and has been considered to exhibit probiotic potential in vitro and in vivo. The probiotic function of the strain was studied extensively, viz., acid and bile salt tolerances, cell surface hydrophobicity and autoaggregation, the modulation of gut microbiota, and the distribution and colonization of XL10 in the mouse intestinal tract after oral administration. XL10 could survive 3-h incubation at pH 3.5 and exhibited cell surface hydrophobicity of ∼79.9% and autoaggregation of ∼27.8%. After continuous oral administration of XL10 for 2 weeks, the Bifidobacteriaceae family increased, accompanied by an observable decline in Proteobacteria phyla in the tested mice. Butyrivibrio and Pseudobutyrivibrio, recognized as butyric acid-producing bacteria, could also be detected at day 7 and day 14, respectively. The most abundant community in the mouse gut had formed by day 14. Additionally, we found that XL10 successfully adhered to the mucous tissue and colonized the ileum of the mice based on fluorescence imaging, flow cytometry, and qPCR. Our results suggested that XL10 has excellent probiotic properties and represents an alternative for exploitation in the development of novel functional foods.
高产胞外多糖(EPS)的开菲尔乳杆菌XL10从西藏开菲尔粒中分离得到,对人类健康有益,并且在体外和体内均被认为具有益生菌潜力。对该菌株的益生菌功能进行了广泛研究,即酸耐受性和胆盐耐受性、细胞表面疏水性和自聚集性、肠道微生物群的调节以及口服给药后XL10在小鼠肠道中的分布和定殖情况。XL10在pH 3.5条件下孵育3小时后仍能存活,细胞表面疏水性约为79.9%,自聚集性约为27.8%。连续口服XL10两周后,受试小鼠体内双歧杆菌科增加,同时变形菌门明显减少。分别在第7天和第14天还检测到了被认为是产丁酸细菌的丁酸弧菌属和假丁酸弧菌属。到第14天时,小鼠肠道中最丰富的菌群已经形成。此外,基于荧光成像、流式细胞术和定量PCR,我们发现XL10成功黏附于小鼠的黏液组织并定殖于回肠。我们的结果表明,XL10具有优异的益生菌特性,是新型功能性食品开发中可供利用的替代选择。