R esearch Institute, TOTO Ltd., Chigasaki, Kanagawa, Japan.
Faculty of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Biosci Biotechnol Biochem. 2024 Sep 20;88(10):1225-1232. doi: 10.1093/bbb/zbae101.
Cerium oxide (CeO2) nanoparticles, as a metal oxide nanomaterial, are increasingly used for various industrial and biomedical applications. Although their cytotoxicity to bacteria and the associated mechanisms have attracted particular attention, the mechanisms behind their antifungal effects have remained unclear. This study investigated the antifungal properties of CeO2, focusing on Aspergillus oryzae. CeO2 inhibited fungal spore germination on solid substrates, and the effect was fungistatic rather than fungicidal. CeO2 inhibited fungal growth, especially under UV irradiation, and induced reactive oxygen species (ROS) production. Tocopherol reduced the intracellular ROS levels and the growth-inhibitory effects of CeO2, suggesting that ROS are involved in these growth-inhibitory effects. Transcriptomic analysis revealed upregulated expression of genes related to phospholipases and phosphate metabolism. CeO2 affected phosphate ion concentration in the medium, potentially influencing cellular responses. This research provided valuable insights into the antifungal effects of CeO2 application, which differ from those of conventional photocatalysts like TiO2.
氧化铈(CeO2)纳米颗粒作为一种金属氧化物纳米材料,越来越多地应用于各种工业和生物医学领域。尽管它们对细菌的细胞毒性及其相关机制引起了特别关注,但它们的抗真菌作用机制仍不清楚。本研究调查了 CeO2 的抗真菌特性,重点研究了米曲霉(Aspergillus oryzae)。CeO2 抑制了固体基质上真菌孢子的萌发,其作用是抑菌而非杀菌。CeO2 抑制了真菌的生长,尤其是在紫外线照射下,并诱导了活性氧(ROS)的产生。生育酚降低了细胞内 ROS 水平和 CeO2 的生长抑制作用,表明 ROS 参与了这些生长抑制作用。转录组分析显示与磷脂酶和磷酸盐代谢相关的基因表达上调。CeO2 影响了培养基中磷酸盐离子的浓度,可能影响了细胞的反应。这项研究为 CeO2 应用的抗真菌作用提供了有价值的见解,其与 TiO2 等传统光催化剂的作用机制不同。