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首页> 外文期刊>Environmental microbiology >Diet alters probiotic Lactobacillus persistence and function in the intestine
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Diet alters probiotic Lactobacillus persistence and function in the intestine

机译:饮食改变益生菌乳酸菌在肠道的持久性和功能

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We investigated the effects of host diet on the intestinal persistence and gene expression of Lactobacillus plantarum WCFS1 in healthy and health-compromised, 2,4,6-trinitrobenzene sulfonic acid (TNBS)-treated mice. Mice fed either a low-fat chow diet (CD) or high fat and sucrose Western diet (WD) received 109 L. plantarum WCFS1 cells for five consecutive days. Lactobacillus plantarum persistence was 10- to 100-fold greater in the intestines of WD-fed compared with CD-fed mice. TNBS, an intestinal irritant that induces the development of inflammatory bowel disease-like symptoms, resulted in up to a 104-fold increase in L. plantarum survival in the digestive tract relative to healthy animals. Expression levels of 12 metabolic and gut-inducible L. plantarum genes were differentially affected by diet and TNBS administration. Pyrosequencing of 16S rRNA transcripts from the indigenous intestinal microbiota showed that WD resulted in significant reductions in proportions of metabolically active indigenous Lactobacillus species and increases in the Desulfovibrionaceae family. Feeding L. plantarum WCFS1 resulted in lower levels of colitis and higher concentrations of colonic IL-10 and IL-12 in WD and not CD-fed mice. Interactions between probiotics, nutritional components and the intestinal bacteria should be considered when examining for probioticmediated effects and elucidating mechanisms of probiotic function in the mammalian gut.
机译:我们调查了健康饮食和健康受损,2,4,6-三硝基苯磺酸(TNBS)处理的小鼠中宿主饮食对植物乳杆菌WCFS1的肠道持久性和基因表达的影响。用低脂食物(CD)或高脂和蔗糖西方饮食(WD)喂养的小鼠连续五天接受了109株植物乳杆菌WCFS1细胞。与以CD喂养的小鼠相比,在WD喂养的肠道中植物乳杆菌的持久性高10到100倍。 TNBS是一种肠刺激性物质,可诱发类似炎症性肠病的症状,相对于健康动物,其在消化道中的植物乳杆菌存活率提高了104倍。饮食和TNBS施用对12种代谢和肠道诱导的植物乳杆菌基因的表达水平有不同的影响。来自本地肠道菌群的16S rRNA转录产物的焦磷酸测序表明WD导致具有代谢活性的本地乳酸杆菌种类的比例显着降低,而脱硫弧菌科增加。饲喂植物乳杆菌WCFS1在WD而非CD喂养的小鼠中导致较低的结肠炎水平和较高的结肠IL-10和IL-12浓度。在检查益生菌介导的作用并阐明哺乳动物肠道中益生菌功能的机制时,应考虑益生菌,营养成分和肠道细菌之间的相互作用。

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