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制造工艺对益生菌菌株鼠李糖乳杆菌 Lcr35®细胞表面特性的影响。

Influence of manufacturing processes on cell surface properties of probiotic strain Lactobacillus rhamnosus Lcr35®.

机构信息

Département Recherche et Développement-Probionov, Rue des frères Lumières, 15130, Arpajon-sur-Cère, France,

出版信息

Appl Microbiol Biotechnol. 2015 Jan;99(1):399-411. doi: 10.1007/s00253-014-6110-z. Epub 2014 Oct 4.

Abstract

The influence of the industrial process on the properties of probiotics, administered as complex manufactured products, has been poorly investigated. In the present study, we comparatively assessed the cell wall characteristics of the probiotic strain Lactobacillus rhamnosus Lcr35® together with three of its commercial formulations with intestinal applications. Putative secreted and transmembrane-protein-encoding genes were initially searched in silico in the genome of L. rhamnosus Lcr35®. A total of 369 candidate genes were identified which expressions were followed using a custom Lactobacillus DNA chip. Among them, 60 or 67 genes had their expression either upregulated or downregulated in the Lcr Restituo® packet or capsule formulations, compared to the native Lcr35® strain. Moreover, our data showed that the probiotic formulations (Lcr Lenio®, Lcr restituo® capsule and packet) showed a better capacity to adhere to intestinal epithelial Caco-2 cells than the native Lcr35® strain. Microbial (MATS) tests showed that the probiotic was an electron donor and that they were more hydrophilic than the native strain. The enhanced adhesion capacity of the active pharmaceutical ingredients (APIs) to epithelial Caco-2 cells and their antipathogen effect could be due to this greater surface hydrophilic character. These findings suggest that the manufacturing process influences the protein composition and the chemical properties of the cell wall. It is therefore likely that the antipathogen effect of the formulation is modulated by the industrial process. Screening of the manufactured products' properties would therefore represent an essential step in evaluating the effects of probiotic strains.

摘要

工业过程对益生菌复合制品特性的影响研究甚少。本研究比较了具有肠道应用的益生菌菌株鼠李糖乳杆菌 Lcr35®及其三种商业配方的细胞壁特性。最初在鼠李糖乳杆菌 Lcr35®的基因组中进行了生物信息学搜索,以寻找推定的分泌蛋白和跨膜蛋白编码基因。总共鉴定出 369 个候选基因,并使用定制的乳杆菌 DNA 芯片跟踪它们的表达。其中,与原始 Lcr35®菌株相比,Lcr Restituo®包或胶囊配方中 60 或 67 个基因的表达上调或下调。此外,我们的数据表明,与原始 Lcr35®菌株相比,益生菌配方(Lcr Lenio®、Lcr restituo®胶囊和包)对肠道上皮 Caco-2 细胞的黏附能力更强。微生物(MATS)测试表明,益生菌是电子供体,比原始菌株更亲水。活性药物成分(APIs)对上皮 Caco-2 细胞的黏附能力增强及其抗病原体作用可能归因于这种更大的表面亲水性。这些发现表明,制造工艺会影响蛋白质组成和细胞壁的化学性质。因此,配方的抗病原体作用可能受到工业过程的调节。筛选制造产品的特性将是评估益生菌菌株作用的重要步骤。

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