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抗菌静电纺丝壳聚糖基纳米纤维:一种细菌细胞膜穿孔剂。

Antibacterial electrospun chitosan-based nanofibers: A bacterial membrane perforator.

作者信息

Arkoun Mounia, Daigle France, Heuzey Marie-Claude, Ajji Abdellah

机构信息

CREPEC Department of Chemical Engineering École Polytechnique de Montréal Montréal QC Canada.

Department of microbiology infectiology and immunology Pavillon Roger-Gaudry Université de Montréal Montréal QC Canada.

出版信息

Food Sci Nutr. 2017 Apr 10;5(4):865-874. doi: 10.1002/fsn3.468. eCollection 2017 Jul.

Abstract

This study investigates the antibacterial action of chitosan-based nanofibers (CNFs) obtained by the electrospinning process on the permeability of bacterial membranes. The bactericidal efficiency of CNFs was first determined against Gram-negative and Typhimurium, and Gram-positive and bacteria as a baseline. The results strongly suggest that CNFs interact with the negatively charged bacterial cell wall causing membrane rupture and inducing leakage of intracellular components among which are proteins and DNA. Results clearly indicate that the release of such components after contact with CNFs is an indication of membrane permeabilization and perforation, as pore formation was observed in transmission electron microscopy (TEM). This work suggests a plausible antibacterial mechanism of action of CNFs and also provides clear evidence in favor of chitosan as a bacterial membrane disruptor and perforator. As a result, CNFs can find promising applications as bioactive food packaging materials capable to extend shelf life of food products while inhibiting the spread of alteration flora and foodborne pathogens.

摘要

本研究调查了通过静电纺丝工艺制备的壳聚糖基纳米纤维(CNFs)对细菌细胞膜通透性的抗菌作用。首先测定了CNFs对革兰氏阴性鼠伤寒沙门氏菌以及革兰氏阳性菌的杀菌效率作为基线。结果有力地表明,CNFs与带负电荷的细菌细胞壁相互作用,导致膜破裂并诱导细胞内成分(包括蛋白质和DNA)泄漏。结果清楚地表明,与CNFs接触后这些成分的释放是膜通透性和穿孔的一个指标,因为在透射电子显微镜(TEM)中观察到了孔的形成。这项工作提出了一种合理的CNFs抗菌作用机制,也提供了明确的证据支持壳聚糖作为细菌细胞膜破坏剂和穿孔剂。因此,CNFs作为具有生物活性的食品包装材料具有广阔的应用前景,能够延长食品的保质期,同时抑制腐败菌群和食源性病原体的传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ff2/5520865/bef594696460/FSN3-5-865-g001.jpg

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