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金属有机框架(MOF)及其衍生材料的最新进展与潜在应用:表征及抗菌活性

Recent advances and potential applications for metal-organic framework (MOFs) and MOFs-derived materials: Characterizations and antimicrobial activities.

作者信息

Hubab Muhammad, Al-Ghouti Mohammad A

机构信息

Environmental Science Program, Department of Biological and Environmental Sciences, College of Arts and Sciences, Qatar University, State of Qatar, Doha, P.O. Box: 2713, Qatar.

出版信息

Biotechnol Rep (Amst). 2024 Mar 20;42:e00837. doi: 10.1016/j.btre.2024.e00837. eCollection 2024 Jun.

Abstract

Microbial infections, particularly those caused by antibiotic-resistant pathogens, pose a critical global health threat. Metal-Organic Frameworks (MOFs), porous crystalline structures built from metal ions and organic linkers, initially developed for gas adsorption, have emerged as promising alternatives to traditional antibiotics. This review, covering research up to 2023, explores the potential of MOFs and MOF-based materials as broad-spectrum antimicrobial agents against bacteria, viruses, fungi, and even parasites. It delves into the historical context of antimicrobial agents, recent advancements in MOF research, and the diverse synthesis techniques employed for their production. Furthermore, the review comprehensively analyzes the mechanisms of action by which MOFs combat various microbial threats. By highlighting the vast potential of MOFs, their diverse synthesis methods, and their effectiveness against various pathogens, this study underscores their potential as a novel solution to the growing challenge of antibiotic resistance.

摘要

微生物感染,尤其是由耐抗生素病原体引起的感染,对全球健康构成了严峻威胁。金属有机框架(MOF)是由金属离子和有机连接体构建而成的多孔晶体结构,最初用于气体吸附,现已成为传统抗生素的有前途的替代品。本综述涵盖了截至2023年的研究,探讨了MOF及其基材料作为针对细菌、病毒、真菌甚至寄生虫的广谱抗菌剂的潜力。它深入研究了抗菌剂的历史背景、MOF研究的最新进展以及用于其生产的各种合成技术。此外,该综述全面分析了MOF对抗各种微生物威胁的作用机制。通过强调MOF的巨大潜力、其多样的合成方法以及它们对各种病原体的有效性,本研究强调了它们作为应对日益增长的抗生素耐药性挑战的新解决方案的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8981/10992724/452e2225f1e7/ga1.jpg

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