Jin Su-Eon, Jin Hyo-Eon
Research Institute for Medical Sciences, College of Medicine, Inha University, Incheon 22212, Korea.
College of Pharmacy, Ajou University, Suwon 16499, Korea.
Nanomaterials (Basel). 2021 Jan 20;11(2):263. doi: 10.3390/nano11020263.
Zinc oxide (ZnO) nano/microparticles (NPs/MPs) have been studied as antibiotics to enhance antimicrobial activity against pathogenic bacteria and viruses with or without antibiotic resistance. They have unique physicochemical characteristics that can affect biological and toxicological responses in microorganisms. Metal ion release, particle adsorption, and reactive oxygen species generation are the main mechanisms underlying their antimicrobial action. In this review, we describe the physicochemical characteristics of ZnO NPs/MPs related to biological and toxicological effects and discuss the recent findings of the antimicrobial activity of ZnO NPs/MPs and their combinations with other materials against pathogenic microorganisms. Current biomedical applications of ZnO NPs/MPs and combinations with other materials are also presented. This review will provide the better understanding of ZnO NPs/MPs as antibiotic alternatives and aid in further development of antibiotic agents for industrial and clinical applications.
氧化锌(ZnO)纳米/微粒(NPs/MPs)已作为抗生素进行研究,以增强对有或无抗生素抗性的致病细菌和病毒的抗菌活性。它们具有独特的物理化学特性,可影响微生物中的生物学和毒理学反应。金属离子释放、颗粒吸附和活性氧生成是其抗菌作用的主要机制。在本综述中,我们描述了与生物学和毒理学效应相关的ZnO NPs/MPs的物理化学特性,并讨论了ZnO NPs/MPs及其与其他材料组合对致病微生物的抗菌活性的最新研究结果。还介绍了ZnO NPs/MPs及其与其他材料组合的当前生物医学应用。本综述将有助于更好地理解ZnO NPs/MPs作为抗生素替代品,并有助于进一步开发用于工业和临床应用的抗生素制剂。