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用于靶向耐药生物膜的仿生金属纳米颗粒的最新趋势

Recent Trends in Bioinspired Metal Nanoparticles for Targeting Drug-Resistant Biofilms.

作者信息

Bharathi Devaraj, Lee Jintae

机构信息

School of Chemical Engineering, Yeungnam University, 280 Daehak-Ro, Gyeongsan 38541, Republic of Korea.

出版信息

Pharmaceuticals (Basel). 2025 Jul 5;18(7):1006. doi: 10.3390/ph18071006.

Abstract

Multidrug-resistant (MDR) biofilm infections characterized by densely packed microbial communities encased in protective extracellular matrices pose a formidable challenge to conventional antimicrobial therapies and are a major contributor to chronic, recurrent and device-associated infections. These biofilms significantly reduce antibiotic penetration, facilitate the survival of dormant persister cells and promote horizontal gene transfer, all of which contribute to the emergence and persistence of MDR pathogens. Metal nanoparticles (MNPs) have emerged as promising alternatives due to their potent antibiofilm properties. However, conventional synthesis methods are associated with high costs, complexity, inefficiency and negative environmental impacts. To overcome these limitations there has been a global push toward the development of sustainable and eco-friendly synthesis approaches. Recent advancements have demonstrated the successful use of various plant extracts, microbial cultures, and biomolecules for the green synthesis of MNPs, which offers biocompatibility, scalability, and environmental safety. This review provides a comprehensive overview of recent trends and the latest progress in the green synthesis of MNPs including silver (Ag), gold (Au), platinum (Pt), and selenium (Se), and also explores the mechanistic pathways and characterization techniques. Furthermore, it highlights the antibiofilm applications of these MNPs emphasizing their roles in disrupting biofilms and restoring the efficacy of existing antimicrobial strategies.

摘要

多重耐药(MDR)生物膜感染的特征是密集堆积的微生物群落包裹在保护性细胞外基质中,这对传统抗菌疗法构成了巨大挑战,并且是慢性、复发性和器械相关感染的主要原因。这些生物膜显著降低抗生素的渗透性,促进休眠持留菌的存活并促进水平基因转移,所有这些都导致了MDR病原体的出现和持续存在。金属纳米颗粒(MNP)因其强大的抗生物膜特性而成为有前景的替代物。然而,传统的合成方法存在成本高、复杂性高、效率低和对环境有负面影响等问题。为了克服这些限制,全球都在推动可持续和环保合成方法的发展。最近的进展表明,各种植物提取物、微生物培养物和生物分子已成功用于MNP的绿色合成,这具有生物相容性、可扩展性和环境安全性。本综述全面概述了MNP绿色合成的最新趋势和最新进展,包括银(Ag)、金(Au)、铂(Pt)和硒(Se),并探讨了其作用机制途径和表征技术。此外,它强调了这些MNP的抗生物膜应用,突出了它们在破坏生物膜和恢复现有抗菌策略有效性方面的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e4a/12300851/048ea425cb50/pharmaceuticals-18-01006-g003a.jpg

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