生物材料
抗生素耐药性
纳米技术
风险分析(工程)
计算机科学
重症监护医学
医学
工程伦理学
抗生素
工程类
生物
材料科学
微生物学
作者
Annabel Braem,Nur Hidayatul Nazirah Kamarudin,Nitu Bhaskar,Zoya Hadzhieva,Andrea Mele,Jérémy Soulié,Denver P. Linklater,Linda Bonilla‐Gameros,Aldo R. Boccaccını,Ipsita Roy,Christophe Drouet,Elena P. Ivanova,Diego Mantovani,Bikramjit Basu
标识
DOI:10.1080/09506608.2023.2193784
摘要
Peri-implant infection is rapidly becoming an – if not the most – important clinical challenge for indwelling medical devices. To alleviate the global rise in antibiotic use for the treatment of such infections, a plethora of biomaterials/bioengineering-based antimicrobial strategies are emerging to restrict or ideally to eliminate microbial adhesion and biofilm formation on implant surfaces. Yet, the development of such approaches faces specific challenges, like biocompatibility concerns, reduced antimicrobial effectiveness, long-term stability issues and antibiotic resistance development, which limit translation to the clinic. This review provides insights into the antimicrobial activity of current state-of-the-art biomaterial-based approaches to address the aforementioned issues. Translational research strategies and regulatory framework are also emphasised as key elements facilitating clinical implementation of anti-infective biomaterials. This review closes with the vision that the integration of computational tools and experimental databases using artificial intelligence (AI) would provide new insights for the accelerated development of next-generation biomaterial-based antimicrobial strategies.
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