Environment‐Responsive Therapeutic Platforms for the Treatment of Implant Infection

植入 材料科学 医学 纳米技术 外科
作者
Yanling Hu,Shengke Li,Heng Dong,Lixing Weng,Lihui Yuwen,Yannan Xie,Jun Yang,Jinjun Shao,Xuejiao Song,Dongliang Yang,Lianhui Wang
出处
期刊:Advanced Healthcare Materials [Wiley]
卷期号:12 (26): e2300985-e2300985 被引量:68
标识
DOI:10.1002/adhm.202300985
摘要

The application of medical implants has greatly improved the survival rate and life quality of patients. Nevertheless, in recent years, there are increasing cases of implant dysfunction or failure because of bacterial infections. Despite significant improvements in biomedicine, there are still serious challenges in the treatment of implant-related infections. With the formation of bacterial biofilms and the development of bacterial resistance, these limitations lead to a low efficacy of conventional antibiotics. To address these challenges, it is urgent to exploit innovative treatment strategies for implant-related infections. Based on these ideas, environment-responsive therapeutic platforms with high selectivity, low drug resistance, and minor dose-limiting toxicity have attracted widespread attention. By using exogenous/endogenous stimuli, the antibacterial activity of therapeutics can be activated on demand and exhibit remarkable therapeutic effects. Exogenous stimuli include photo, magnetism, microwave, and ultrasound. Endogenous stimuli mainly include the pathological characteristics of bacterial infections such as acidic pH, anomalous temperature, and abnormal enzymatic activities. In this review, the recent progress of environment-responsive therapeutic platforms with spatiotemporally controlled drug release/activation is systematically summarized. Afterward, the limitations and opportunities of these emerging platforms are highlighted. Finally, it is hoped that this review will offer novel ideas and techniques to combat implant-related infections.
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