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The effect of chitosan nanoparticles onto Lactobacillus cells

机译:壳聚糖纳米粒子对乳酸菌细胞的影响

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Chitosan (CS) and trimethyl chitosan (TMC) solutions, as well as nanoparticles synthesized by ionic gelation:method are studied. Their characterization is focused on determining the charge and antimicrobial properties against common pathogenic microorganisms and Lactobacillus spp., usually found in resident microbiota of vaginal and gastrointestinal tract. Special emphasis is given to the evaluation of antimicrobial activity in relation to the available cationic charge and the presence of nano-sized chitosan in comparison with chitosan macromolecules. In order to investigate the chitosan's antimicrobial mode of action diffusion nuclear magnetic resonance (D-NMR) is used as a novel approach. This technique enables the monitoring of chitosan nanoparticles (CSNP) effects onto healthy Lactobacillus cells. D-NMR results indicate that CSNP interact with the membrane of Lactobacillus cells, causing the perturbation of the membrane wall and lead to the death of the cells, suggesting the mechanism of Lactobacillus inhibition caused by CSNP. Lactobacillus inhibition is also reflected in low minimal inhibitory concentration (MIC). (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了壳聚糖(CS)和三甲基壳聚糖(TMC)溶液以及通过离子凝胶法合成的纳米粒子。它们的表征集中于确定通常在阴道和胃肠道的菌群中发现的针对常见病原微生物和乳杆菌属的电荷和抗菌特性。与壳聚糖大分子相比,对与可用阳离子电荷和纳米级壳聚糖的存在有关的抗菌活性的评估给予了特别的重视。为了研究壳聚糖的抗菌作用方式,扩散核磁共振(D-NMR)被用作一种新方法。这项技术能够监测壳聚糖纳米颗粒(CSNP)对健康乳杆菌细胞的作用。 D-NMR结果表明CSNP与乳杆菌细胞的膜相互作用,引起膜壁的扰动并导致细胞死亡,提示CSNP引起的乳杆菌抑制作用的机制。乳酸菌抑制作用还反映在低最低抑菌浓度(MIC)较低。 (C)2015 Elsevier B.V.保留所有权利。

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