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Inorganic Nanoparticles and Composite Films for Antimicrobial Therapies

机译:无机纳米粒子和用于抗微生物疗法的复合膜

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摘要

The development of drug-resistant microorganisms has become a critical issue for modern medicine and drug discovery and development with severe socio-economic and ecological implications. Since standard and conventional treatment options are generally inefficient, leading to infection persistence and spreading, novel strategies are fundamentally necessary in order to avoid serious global health problems. In this regard, both metal and metal oxide nanoparticles (NPs) demonstrated increased effectiveness as nanobiocides due to intrinsic antimicrobial properties and as nanocarriers for antimicrobial drugs. Among them, gold, silver, copper, zinc oxide, titanium oxide, magnesium oxide, and iron oxide NPs are the most preferred, owing to their proven antimicrobial mechanisms and bio/cytocompatibility. Furthermore, inorganic NPs can be incorporated or attached to organic/inorganic films, thus broadening their application within implant or catheter coatings and wound dressings. In this context, this paper aims to provide an up-to-date overview of the most recent studies investigating inorganic NPs and their integration into composite films designed for antimicrobial therapies.
机译:抗药性微生物的发展已成为现代医学和药物发现和发展严重社会经济和生态影响的关键问题。由于标准和常规治疗方案通常低效,导致感染持久性和传播,从根本上是必要的,以避免严重的全球健康问题。在这方面,金属和金属氧化物纳米颗粒(NPS)由于固有的抗微生物性质和用于抗微生物药物的纳米载体而显示为纳米飞剂的效率增加。其中,由于其经过验证的抗微生物机制和生物/细胞相容性,最优选金,银,铜,氧化锌,氧化钛,氧化镁和氧化铁NPS。此外,无机NP可以掺入或附着在有机/无机膜上,从而在植入物或导管涂层和伤口敷料中展开它们的应用。在这方面,本文旨在提供最新研究的最新研究,调查无机NP及其集成到专为抗微生物疗法设计的复合薄膜。

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