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Stimuli-Responsive Release of Antimicrobials Using Hybrid Inorganic Nanoparticle-Associated Drug-Delivery Systems

机译:使用杂种无机纳米颗粒相关药物输送系统刺激抗菌剂的抗菌释放

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摘要

Recently, the combination of metallic nanoparticles (NPs) of Au, Ag, Fe2O3, and Fe3O4 with traditional soft matter drug-delivery systems has emerged as a promising strategy to achieve site-specific and controlled release of antimicrobial agents. By harnessing the plasmonic and magnetic properties of inorganic NPs, the disruption of antibiotic-loaded liposomes, polymersomes, and hydrogels can be remotely triggered by mechanisms such as photo- and magneto-thermal effects, microbubble cavitation, magnetic positioning, and pH-changes, hence offering significant advantages in improving antibacterial efficacy, reducing side effects, and in overcoming antimicrobial resistance. This review highlights the latest development of stimuli-responsive antibiotic delivery systems incorporating inorganic NPs. The methods employed for preparation of hybrid inorganic NP-associated drug-delivery systems and the effects this has upon the system are discussed. Finally, a detailed exposition of the NP-mediated triggering mechanisms is provided and pertinent examples of their use in antimicrobial applications are presented.
机译:最近,Au,Ag,Fe 2 O 3和Fe3O4的金属纳米颗粒(NPS)的组合具有传统的软物药物 - 输送系统,作为实现抗微生物剂的现场特异性和控制释放的有希望的策略。通过利用无机NP的等离子体和磁性,可以通过诸如光磁效应,微泡空化,磁定位和pH变化的机制来远程触发抗生素负载脂质体,聚合物和水凝胶的破坏,因此,在提高抗菌功效,降低副作用和克服抗菌性抗性抗性抗性方面提供了显着的优势。本综述凸显了掺入无机NPS的刺激响应抗生素递送系统的最新发展。讨论了用于制备杂交无机NP相关药物输送系统的方法及其对系统的影响。最后,提供了NP介导的触发机制的详细阐述,并提出了其在抗微生物应用中使用的相关实例。

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