抗生素
免疫系统
免疫调节
肺
微生物学
肺部感染
调制(音乐)
免疫学
医学
生物
内科学
物理
声学
作者
Weijun Xiu,Heng Dong,Xiaolong Chen,Ling Wan,Liang Lu,Kaili Yang,Lihui Yuwen,Qiang Li,Meng Ding,Yu Zhang,Yongbin Mou,Lianhui Wang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2024-05-28
卷期号:18 (23): 15204-15217
被引量:2
标识
DOI:10.1021/acsnano.4c03527
摘要
The Pseudomonas aeruginosa biofilm in recalcitrant chronic lung infections not only develops high antimicrobial tolerance but also induces an aberrant host inflammatory response. The metabolic condition plays a vital role in both the antimicrobial susceptibility of bacteria and the inflammatory response of immune cells, thereby offering a potential therapeutic target. Herein, we described a metabolic modulation strategy by using ultrasound-responsive liposomal nanoparticles containing a sonosensitizer and a hypoxia-activated prodrug against biofilm-associated chronic lung infections. Under ultrasound stimulation, the sonosensitizer generates antibacterial reactive oxygen species by oxygen consumption. Subsequently, the oxygen consumption-mediated hypoxia not only induces the anaerobic metabolism of bacteria for antibiotic activation but also triggers the glycolysis pathway of immune cells for inflammatory activation. Such metabolic modulation strategy demonstrated efficient therapeutic efficacy for P. aeruginosa biofilm-induced chronic lung infections in mice models and provides a promising way for combating biofilm-associated chronic infections.
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