College of Veterinary Medicine, Gansu Agriculture University, Lanzhou, China.
College of Pharmacy, Gansu University of Traditional Chinese Medicine, Lanzhou, China.
J Appl Toxicol. 2024 Jan;44(1):107-117. doi: 10.1002/jat.4522. Epub 2023 Jul 30.
Modern nanotechnology has made zinc oxide nanomaterials (ZnO NMts) multifunctional, stable, and low cost, enabling them to be widely used in commercial and biomedical fields. With its wide application, the risk of human direct contact and their release into the environment also increases. This review aims to summarize the toxicity studies of ZnO NMts in vivo, including neurotoxicity, inhalation toxicity, and reproductive toxicity. The antibacterial and antiviral mechanisms of ZnO NMts in vitro and the toxicity to eukaryotic cells were summarized. The summary found that it was mainly related to reactive oxygen species (ROS) produced by oxidative stress. It also discusses the potential harm to body and the favorable prospects of the widespread use of antibacterial and antiviral in the future medical field. The review also emphasizes that the dosage and use method of ZnO NMts will be the focus of future biomedical research.
现代纳米技术使氧化锌纳米材料(ZnO NMts)具有多功能性、稳定性和低成本,使其能够广泛应用于商业和生物医学领域。随着其广泛应用,人类直接接触和释放到环境中的风险也在增加。本综述旨在总结 ZnO NMts 在体内的毒性研究,包括神经毒性、吸入毒性和生殖毒性。总结了 ZnO NMts 在体外的抗菌和抗病毒机制以及对真核细胞的毒性。综述发现,这主要与氧化应激产生的活性氧(ROS)有关。还讨论了对身体的潜在危害以及在未来医学领域广泛应用抗菌和抗病毒的有利前景。该综述还强调,ZnO NMts 的剂量和使用方法将是未来生物医学研究的重点。