[Preparation, characterization and activity evaluation of Spirulina-chitooligosaccharides capable of inhibiting biofilms].

生物膜 螺旋藻(膳食补充剂) 微生物学 化学 微生物 Zeta电位 甲壳素 多糖 细菌 食品科学 壳聚糖 生物 生物化学 纳米技术 纳米颗粒 材料科学 有机化学 原材料 遗传学
作者
Ruizhi Sun,Xiuxiang Tao,Yangyang Liu,Liming Zhang,Siming Jiao,Yuchen Zhang,Xiao‐Dong Gao,Zhuo Wang,Yifeng Du
出处
期刊:PubMed 卷期号:39 (10): 4135-4149
标识
DOI:10.13345/j.cjb.230146
摘要

The biofilms formed by pathogenic microorganisms seriously threaten human health and significantly enhance drug resistance, which urgently call for developing drugs specifically targeting on biofilms. Chitooligosaccharides extracted from shrimp and crab shells are natural alkaline oligosaccharides with excellent antibacterial effects. Nevertheless, their inhibition efficacy on biofilms still needs to be improved. Spirulina (SP) is a microalga with negatively charged surface, and its spiral structure facilitates colonization in the depth of the biofilm. Therefore, the complex of Spirulina and chitooligosaccharides may play a synergistic role in killing pathogens in the depth of biofilm. This research first screened chitooligosaccharides with significant bactericidal effects. Subsequently, Spirulina@Chitooligosaccharides (SP@COS complex was prepared by combining chitooligosaccharides with Spirulina through electrostatic adsorption. The binding of the complex was characterized by zeta potential, z-average size, and fluorescence labeling. Ultraviolet-visible spectroscopy (UV-Vis) showed the encapsulation efficiency and the drug loading efficiency reached up to 90% and 16%, respectively. The prepared SP@COS2 exhibited a profound synergistic inhibition effect on bacterial and fungal biofilms, which was mainly achieved by destroying the cell structure of the biofilm. These results demonstrate the potential of Spirulina-chitooligosaccharides complex as a biofilm inhibitor and provide a new idea for addressing the harm of pathogenic microorganisms.
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