College of Food Science and Engineering, National & Local Joint Engineering Research Center of Storage, Processing and Safety Control Technology for Fresh Agricultural and Aquatic Products, Bohai University, Jinzhou, China.
Jiangxi Jiangteng Environmental Testing Technology Co., Ltd., Shangrao, China.
J Sci Food Agric. 2020 Dec;100(15):5527-5538. doi: 10.1002/jsfa.10605. Epub 2020 Aug 24.
To improve the physicochemical and antibacterial properties of coatings, the chitosan (CS) coatings were respectively prepared by a casting method with zinc oxide (ZnO) and silver (Ag)/ZnO microspheres as modifiers. The chemical structures and micromorphology of ZnO, Ag/ZnO microspheres and CS coatings were characterized by X-ray diffraction, Fourier-transform infrared spectroscopy, scanning electron microscopy, transmission electron microscopy and energy dispersive X-ray spectroscopy. Furthermore, using the dominant spoilage bacteria of aquatic products, Shewanella putrefaciens and Pseudomonas aeruginosa, as objects, the antibacterial activities and mechanism of the CS coatings were investigated.
The results show that ZnO and Ag/ZnO microspheres are dispersed homogeneously in the CS coatings. After modified by ZnO and Ag/ZnO microspheres, the mechanical properties and antibacterial abilities of the CS coatings are improved, and that of 0.5% Ag/ZnO-CS coating is the optimal. For pure CS coating, the bacterial cell membrane is damaged slightly because of the electrostatic interaction between NH of CS and the negative charge on bacterial surface. After treated by ZnO-CS composite coating, the bacterial cell membrane is destroyed badly on account of the earlier-mentioned ion interaction and disturbing the synthesis of high molecular weight total protein.
With regard to Ag/ZnO-CS composite coating, the bacterial cell membrane is damaged seriously and cell contents are completely released due to ion interaction, disturbing the synthesis of high molecular weight total protein and low molecular weight membrane protein. Hence, Ag/ZnO-CS composite coatings are antimicrobial materials and food preservative materials with great potential application. © 2020 Society of Chemical Industry.
为改善涂层的物理化学和抗菌性能,分别采用 casting 法制备了壳聚糖(CS)涂层,并用氧化锌(ZnO)和银(Ag)/ZnO 微球作为改性剂。采用 X 射线衍射、傅里叶变换红外光谱、扫描电子显微镜、透射电子显微镜和能谱分析对 ZnO、Ag/ZnO 微球和 CS 涂层的化学结构和微观形貌进行了表征。此外,以水产品腐败菌希瓦氏菌和铜绿假单胞菌为对象,研究了 CS 涂层的抗菌活性和机制。
结果表明,ZnO 和 Ag/ZnO 微球在 CS 涂层中均匀分散。经 ZnO 和 Ag/ZnO 微球改性后,CS 涂层的力学性能和抗菌性能得到提高,其中 0.5%Ag/ZnO-CS 涂层的性能最佳。对于纯 CS 涂层,由于 CS 中的 NH 与细菌表面的负电荷之间的静电相互作用,细菌细胞膜受到轻微损伤。经 ZnO-CS 复合涂层处理后,由于上述离子相互作用和干扰高分子量总蛋白的合成,细菌细胞膜被严重破坏。
对于 Ag/ZnO-CS 复合涂层,由于离子相互作用,破坏了细菌细胞膜,细胞内容物完全释放,干扰了高分子量总蛋白和低分子量膜蛋白的合成。因此,Ag/ZnO-CS 复合涂层是一种具有很大应用潜力的抗菌材料和食品防腐剂。 © 2020 英国化学学会。