左氧氟沙星
去细胞化
泌尿系统
医学
体内
生物相容性
药物输送
化学
微生物学
生物医学工程
抗生素
内科学
材料科学
组织工程
生物
纳米技术
生物技术
有机化学
作者
Yi Yang,Guangwei Yang,Jian-Juan Lu,Hao Chen,Yongqiang Guo,Ning Yang,Yun-Zhu Zhu,Xiaoqiang Liu,Tingting Su,Yanyan Liu,Yukui Zhang,Ya-Sheng Li,Lifen Hu,Jiabin Li
标识
DOI:10.1186/s12951-024-02322-w
摘要
Abstract Bacterial cystitis, a commonly occurring urinary tract infection (UTI), is renowned for its extensive prevalence and tendency to recur. Despite the extensive utilization of levofloxacin as a conventional therapeutic approach for bacterial cystitis, its effectiveness is impeded by adverse toxic effects, drug resistance concerns, and its influence on the gut microbiota. This study introduces Lev@PADM, a hydrogel with antibacterial properties that demonstrates efficacy in the treatment of bacterial cystitis. Lev@PADM is produced by combining levofloxacin with decellularized porcine acellular dermal matrix hydrogel and exhibits remarkable biocompatibility. Lev@PADM demonstrates excellent stability as a hydrogel at body temperature, enabling direct administration to the site of infection through intravesical injection. This localized delivery route circumvents the systemic circulation of levofloxacin, resulting in a swift and substantial elevation of the antimicrobial agent’s concentration specifically at the site of infection. The in vivo experimental findings provide evidence that Lev@PADM effectively prolongs the duration of levofloxacin’s action, impedes the retention and invasion of E.coli in the urinary tract, diminishes the infiltration of innate immune cells into infected tissues, and simultaneously preserves the composition of the intestinal microbiota. These results indicate that, in comparison to the exclusive administration of levofloxacin, Lev@PADM offers notable benefits in terms of preserving the integrity of the bladder epithelial barrier and suppressing the recurrence of urinary tract infections. Graphical Abstract
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