首页> 外文期刊>International Journal of Microbiology >Microencapsulation of Probiotic Strains by Lyophilization Is Efficient in Maintaining the Viability of Microorganisms and Modulation of Fecal Microbiota in Cats
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Microencapsulation of Probiotic Strains by Lyophilization Is Efficient in Maintaining the Viability of Microorganisms and Modulation of Fecal Microbiota in Cats

机译:通过冻干化的益生菌菌株微胶囊是有效的,在维持微生物的生存和猫卵中的粪便微生物的调节中有效

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High extrusion temperatures may compromise the functionality of probiotics in dry food. This study aimed to (i) evaluate the effects of two types of microencapsulation techniques, different encapsulating agents, and 120 days of storage on the viability of a commercial probiotic product and (ii) investigate fecal microbiota populations and fecal characteristics of adult cats fed with diets supplemented with probiotics. Three experimental treatments were evaluated: T1, commercial feed (control); T2, commercial kibbles coated with probiotics; and T3, commercial feed supplemented with freeze-dried probiotics and fructooligosaccharides. Fructooligosaccharides and gum arabic were used as encapsulating agents for freeze drying and spray drying and a pool containing Lactobacillus acidophilus, Lactobacillus casei, Lactobacillus lactis, Bifidobacterium bifidum, Enterococcus faecium, and Saccharomyces cerevisiae as a probiotic. Diets were provided to 18 adult cats for 20 days. Feed samples were evaluated microbiologically, and feces were characterized according to their microbial content, pH, and fecal score. Freeze drying was more effective in maintaining microbial viability. Microcapsules prepared using fructooligosaccharides as encapsulants had the highest bacterial count: 8.74?log CFU/g of lactic acid bacteria and 8.75?log CFU/g of enterococci. Probiotics and synbiotics positively modulated (P0.05) the fecal microbiota of cats, increasing the lactic acid bacteria counts from 3.65 to 4.87 and 5.07?log CFU/g, respectively. Microbial viability decreased significantly (P0.05) after storage, demonstrating the need for effective protection mechanisms against extrinsic agents. In conclusion, the supplementation of cat diets with probiotics positively affected the gut microbiota. However, the results reinforce that probiotic microorganisms must be incorporated into the animal feed via effective mechanisms to withstand harsh processing conditions and storage.
机译:高挤出温度可能会损害干粮中益生菌的功能。本研究旨在(i)评价两种类型的微胶囊化技术,不同包封剂和120天的储存对商业益生菌产品的可行性和(ii)调查粪便微生物群种群和饲喂成年猫的粪便特征的效果补充益生菌的饮食。评估三种实验处理:T1,商业饲料(控制); T2,涂有益生菌的商业瘫痪;和T3,补充有冷冻干燥的益生菌和果寡糖的商用饲料。将果糖糖苷和胶阿拉伯糖作为冷冻干燥和喷雾干燥的包封剂和含有乳杆菌嗜酸乳杆菌,乳杆菌酪虫,乳杆菌,双歧杆菌,肠球菌,粪便菌和酿酒酵母作为益生菌的游泳池。节食为18名成人猫20天。在微生物学上评估进料样品,并根据其微生物含量,pH和粪便评分表征粪便。冷冻干燥在维持微生物活力方面更有效。使用果寡聚糖作为密封剂制备的微胶囊具有最高的细菌计数:8.74?Log Cfu / g乳酸菌和8.75〜7.75°CFU / g肠球菌。益生菌和Synbiotics积极调节(P <0.05)猫的粪便微生物群,将乳酸菌增加3.65-4.87和5.07?log cfu / g。微生物活力显着降低(P <0.05),储存后,表明需要对外部药剂有效的保护机制。总之,用益生菌的补充猫饮食积极影响肠道微生物。然而,结果加强了益生菌微生物必须通过有效机制掺入动物饲料中以承受苛刻的加工条件和储存。

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