Recent advances in nanomaterials and their mechanisms for infected wounds management

IF 10.2 1区 医学 Q1 ENGINEERING, BIOMEDICAL Materials Today Bio Pub Date : 2025-04-01 Epub Date: 2025-02-04 DOI:10.1016/j.mtbio.2025.101553
Jianping Zhu , Fan Xia , Shuaifei Wang , Yan Guan , Fuqiang Hu , Fangying Yu
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Abstract

Wounds infected by bacteria pose a considerable challenge in the field of healthcare, particularly with the increasing prevalence of antibiotic-resistant pathogens. Traditional antibiotics often fail to achieve effective results due to limited penetration, resistance development, and inadequate local concentration at wound sites. These limitations necessitate the exploration of alternative strategies that can overcome the drawbacks of conventional therapies. Nanomaterials have emerged as a promising solution for tackling bacterial infections and facilitating wound healing, thanks to their distinct physicochemical characteristics and multifunctional capabilities. This review highlights the latest developments in nanomaterials that demonstrated enhanced antibacterial efficacy and improved wound healing outcomes. The antibacterial mechanisms of nanomaterials are varied, including ion release, chemodynamic therapy, photothermal/photodynamic therapy, electrostatic interactions, and delivery of antibacterial drugs, which not only combat bacterial infections but also address the challenges posed by biofilms and antibiotic resistance. Furthermore, these nanomaterials create an optimal environment for tissue regeneration, promoting faster wound closure. By leveraging the unique attributes of nanomaterials, there is a significant opportunity to revolutionize the management of infected wounds and markedly improve patient outcomes.

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纳米材料及其感染伤口处理机制的最新进展
细菌感染的伤口在医疗保健领域构成了相当大的挑战,特别是随着耐抗生素病原体的日益流行。传统抗生素由于渗透有限、产生耐药性和伤口局部浓度不足,往往不能达到有效效果。这些限制需要探索替代策略,以克服传统疗法的缺点。纳米材料由于其独特的物理化学特性和多功能能力,已经成为解决细菌感染和促进伤口愈合的有希望的解决方案。这篇综述强调了纳米材料的最新发展,证明了增强抗菌功效和改善伤口愈合的结果。纳米材料的抗菌机制多种多样,包括离子释放、化学动力治疗、光热/光动力治疗、静电相互作用和抗菌药物的递送,不仅可以对抗细菌感染,还可以解决生物膜和抗生素耐药性带来的挑战。此外,这些纳米材料为组织再生创造了最佳环境,促进伤口更快愈合。通过利用纳米材料的独特属性,有一个重大的机会来彻底改变感染伤口的管理,并显着改善患者的预后。
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来源期刊
CiteScore
8.30
自引率
4.90%
发文量
303
审稿时长
30 days
期刊介绍: Materials Today Bio is a multidisciplinary journal that specializes in the intersection between biology and materials science, chemistry, physics, engineering, and medicine. It covers various aspects such as the design and assembly of new structures, their interaction with biological systems, functionalization, bioimaging, therapies, and diagnostics in healthcare. The journal aims to showcase the most significant advancements and discoveries in this field. As part of the Materials Today family, Materials Today Bio provides rigorous peer review, quick decision-making, and high visibility for authors. It is indexed in Scopus, PubMed Central, Emerging Sources, Citation Index (ESCI), and Directory of Open Access Journals (DOAJ).
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