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Lyophilized alginate-based microspheres containing Lactobacillus fermentum D12, an exopolysaccharides producer, contribute to the strain’s functionality in vitro

机译:含含乳杆菌的含藻酸盐的藻酸盐酸盐,含有乳酸杆菌D12,一种外核生产者,有助于体外菌株的功能

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Lactobacillus (Limosilactobacillus) fermentum D12 is an exopolysaccharide (EPS) producing strain whose genome contains a putative eps operon. Whole-genome analysis of D12 was performed to disclose the essential genes correlated with activation of precursor molecules, elongation and export of the polysaccharide chain, and regulation of EPS synthesis. These included the genes required for EPS biosynthesis such as epsA, B, C, D and E, also gt, wzx, and wzy and those involved in the activation of the precursor molecules galE, galT and galU. Both the biosynthesis and export mechanism of EPS were proposed based on functional annotation. When grown on MRS broth with an additional 2% w/v glucose, L. fermentum D12 secreted up to 200?mg/L of a mixture of EPSs, whose porous structure was visualized by scanning electron microscopy (SEM). Structural information obtained by 1HNMR spectroscopy together with composition and linkage analyses, suggested the presence of at least two different EPSs, a branched heteropolysaccharide containing t-Glcp and 2,6-linked Galf, and glycogen. Since recent reports showed that polysaccharides facilitate the probiotic-host interactions, we at first sought to evaluate the functional potential of L. fermentum D12. Strain D12 survived simulated gastrointestinal tract (GIT) conditions, exhibited antibacterial activity against enteropathogenic bacteria, adhered to Caco-2 cells in vitro, and as such showed potential for in vivo functionality. The EPS crude extract positively influenced D12 strain capacity to survive during freeze-drying and to adhere to extracellular matrix (ECM) proteins but did not interfere Caco-2 and mucin adherence when added at concentrations of 0.2, 0.5, and 1.0?mg/mL. Since the viable bacterial count of free D12 cells was 3 logarithmic units lower after the exposure to simulated GIT conditions than the initial count, the bacterial cells had been loaded into alginate for viability improvement. Microspheres of D12 cells, which were previously analyzed at SEM, significantly influenced their survival during freeze-drying and in simulated GIT conditions. Furthermore, the addition of the prebiotic substrates mannitol and lactulose improved the viability of L. fermentum D12 in freeze-dried alginate microspheres during 1-year storage at 4?°C compared to the control.
机译:乳酸杆菌(Limosilactobacillus)发酵乳杆菌D12是产生应变的外糖(EPS),其基因组含有推定的EPS操纵子。进行D12的全基因组分析,公开了与活化前体分子,伸长和多糖链的出口相关的基因,以及EPS合成的调节。这些包括EPS生物合成所需的基因,例如EPSA,B,C,D和E,也GT,WZX和WZY以及参与前体分子大风,GALT和GALU的活化的那些。基于功能注释,提出了EPS的生物合成和出口机制。当用另外的2%w / v葡萄糖生长在MRS肉汤中,L.Fermentum d12分泌到高达200·mg / L的EPS的混合物,其多孔结构通过扫描电子显微镜(SEM)而可视化。通过1HNMR光谱法与组合物和连杆分析一起获得的结构信息,表明存在至少两种不同的EPS,含有T-GLCP和2,6-连接的GALF和糖原的支化杂多糖。由于最近的报道显示多糖促进益生菌宿主相互作用,首先试图评估L.Fermentum D12的功能潜力。菌株D12存活的模拟胃肠道(Git)条件,表现出针对肠致原细菌的抗菌活性,在体外粘附到Caco-2细胞中,并且如体内功能的潜力。 EPS粗提取物在冷冻干燥期间产生正影响D12应变能力,并粘附到细胞外基质(ECM)蛋白,但在0.2,0.5和1.0×Mg / mL的浓度下添加时,不干扰CaCo-2和粘膜粘附性。由于在暴露于模拟的Git条件之后,自由D12细胞的可行细菌计数比初始计数低3个对数单位,因此已经将细菌细胞加载到藻酸盐中以进行活力改善。先前在SEM分析的D12细胞的微球显着影响了冷冻干燥期间的存活率,并在模拟的Git条件下影响它们的存活。此外,与对照相比,在1年储存期间,加入益生元底物甘露醇和乳糖改善了L.Fermentum D12在冻干藻酸盐微球中的活力。

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