溶菌酶
壳聚糖
脂质体
左氧氟沙星
化学
生物利用度
药物输送
控制释放
水解
抗生素
色谱法
药理学
材料科学
生物化学
纳米技术
有机化学
医学
作者
Yuhe Dong,Tong Wu,Tao Jiang,Wanying Zhu,Linyan Chen,Yuantong Cao,Ying Xiao,Peng Ye,Ling Wang,Xi Yu,Tian Zhong
标识
DOI:10.1016/j.ijbiomac.2024.132271
摘要
As an anti-infection antibiotic delivery route, a drug-controlled release system based on a specific condition stimulus response can enhance drug stability and bioavailability, reduce antibiotic resistance, achieve on-demand release and improve targeting and utilization efficiency. In this study, chitosan-coated liposomes containing levofloxacin (Lef@Lip@CS) were prepared with lysozyme in body fluids serving as an intelligent "switch" to enable accurate delivery of antibiotics through the catalytic degradation ability of chitosan. Good liposome encapsulation efficacy (64.89 ± 1.86 %) and loading capacity (5.28 ± 0.18 %) were achieved. The controlled-release behavior and morphological characterization before and after enzymatic hydrolysis confirmed that the levofloxacin release rate depended on the lysozyme concentration and the degrees of deacetylation of chitosan. In vitro bacteriostatic experiments showed significant differences in the effects of Lef@Lip@CS before and after enzyme addition, with 6-h inhibition rate of 72.46 % and 100 %, and biofilm removal rates of 51 % and 71 %, respectively. These findings show that chitosan-coated liposomes are a feasible drug delivery system responsive to lysozyme stimulation.
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