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用于抗菌治疗的纳米结构进展

Advances in Nanostructures for Antimicrobial Therapy.

作者信息

Jampilek Josef, Kralova Katarina

机构信息

Department of Analytical Chemistry, Faculty of Natural Sciences, Comenius University, Ilkovicova 6, 842 15 Bratislava, Slovakia.

Department of Chemical Biology, Faculty of Science, Palacky University Olomouc, Slechtitelu 27, 783 71 Olomouc, Czech Republic.

出版信息

Materials (Basel). 2022 Mar 24;15(7):2388. doi: 10.3390/ma15072388.

Abstract

Microbial infections caused by a variety of drug-resistant microorganisms are more common, but there are fewer and fewer approved new antimicrobial chemotherapeutics for systemic administration capable of acting against these resistant infectious pathogens. Formulation innovations of existing drugs are gaining prominence, while the application of nanotechnologies is a useful alternative for improving/increasing the effect of existing antimicrobial drugs. Nanomaterials represent one of the possible strategies to address this unfortunate situation. This review aims to summarize the most current results of nanoformulations of antibiotics and antibacterial active nanomaterials. Nanoformulations of antimicrobial peptides, synergistic combinations of antimicrobial-active agents with nitric oxide donors or combinations of small organic molecules or polymers with metals, metal oxides or metalloids are discussed as well. The mechanisms of actions of selected nanoformulations, including systems with magnetic, photothermal or photodynamic effects, are briefly described.

摘要

由多种耐药微生物引起的微生物感染更为常见,但能够对抗这些耐药感染病原体的全身给药的新批准抗菌化疗药物却越来越少。现有药物的剂型创新正变得日益重要,而纳米技术的应用是提高现有抗菌药物效果的一种有用替代方法。纳米材料是应对这一不利情况的可能策略之一。本综述旨在总结抗生素纳米制剂和抗菌活性纳米材料的最新研究成果。还讨论了抗菌肽的纳米制剂、抗菌活性剂与一氧化氮供体的协同组合,或小分子或聚合物与金属、金属氧化物或类金属的组合。简要描述了所选纳米制剂的作用机制,包括具有磁、光热或光动力效应的系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bfa/8999898/ca37adef16af/materials-15-02388-g001.jpg

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