Ultrasonically functionalized chitosan-gallic acid films inactivate Staphylococcus aureus through envelope-disruption under UVA light exposure

金黄色葡萄球菌 肽聚糖 壳聚糖 抗菌剂 化学 没食子酸 微生物学 细胞壁 单元格信封 细菌细胞结构 生物物理学 细菌 大肠杆菌 生物化学 生物 抗氧化剂 基因 遗传学
作者
Xinhui Zhang,Qiu Han,Balarabe B. Ismail,Qiao He,Zhehao Yang,Zhipeng Zou,Gengsheng Xiao,Yujuan Xu,Xingqian Ye,Donghong Liu,Mingming Guo
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:255: 128217-128217 被引量:11
标识
DOI:10.1016/j.ijbiomac.2023.128217
摘要

The significant threat of foodborne pathogens contamination has continuously promoted the development of efficient antimicrobial food packaging materials. Here, an antimicrobial film was prepared with gallic acid-grafted-chitosan (CS/GA) that obtained by a two-step ultrasound method. The resultant films exhibited good transparency, improved UV barrier performance, and enhanced mechanical strength. Specifically, with the grafting of 1.2 % GA, the UV blocking ability of CS/GA film at 400 nm was significantly increased by 19.7 % and the tensile strength was nearly two times higher than that of CS film. Moreover, the CS/GA films exhibited an inspiring photoactivated bactericidal ability under 400 nm UVA light irradiation that eradicated almost 99.9 % of Staphylococcus aureus (S. aureus) cells within 60 min. To gain more insights into the antibacterial mechanism, the treated S. aureus cells were further investigated by visualizing bacterial ultrastructure and analyzing membrane properties. The results pointed to the peptidoglycan layer as the primary action target when bacteria come into contact with CS/GA films. Afterward, the intracellular oxidative lesions, disrupted bacterial integrity, and disordered membrane functional properties collectively resulted in eventual cell death. The findings revealed the unique peptidoglycan targeting and membrane disruptive mechanisms of CS/GA films, confirming the application values in controlling foodborne pathogens.
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