纳米技术
生物膜
表面改性
合理设计
转化式学习
生化工程
设计要素和原则
材料科学
工程类
生物
系统工程
细菌
机械工程
心理学
教育学
遗传学
作者
Zheng Wang,Yuanfang Cheng,Hui Shen,Litao Liu,Wei Hu,Haisheng Qian
标识
DOI:10.1002/adhm.202405103
摘要
Bacterial wound infections pose a significant threat to global health, exacerbated by the increase in multidrug-resistant bacteria (MDRB) and the formation of elastic biofilms. This review explores the transformative potential of bioactive materials in addressing these challenges, focusing on their design, mechanisms of action, and therapeutic effects. In vivo, bioactive materials are designed to respond to unique bacterial microenvironment (BME), utilizing enzyme activity, controlled gas release, surface functionalization, and immune regulation to combat infections. In vitro, this review provides a comprehensive overview of the latest advances in the rational design of these materials, emphasizing the synergistic integration of structural modifications (such as size and morphology) with external physical stimuli (such as light, sound, electricity, magnetism, and force) to enhance antibacterial performance. Finally, the outstanding challenges and prospects in this rapidly evolving field are discussed.
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