Li Mei, Ma Yonghua, Lian Xiaodi, Lu Yan, Li Yuanyuan, Xi Yao, Sun Xiaolin
College of Veterinary Medicine, Gansu Agricultural University, Lanzhou, China.
Lanzhou Institute of Biological Products Limited Liability Company, Lanzhou, China.
Front Bioeng Biotechnol. 2022 Oct 4;10:915749. doi: 10.3389/fbioe.2022.915749. eCollection 2022.
In this study, the biological effects of ZnO nanosheets were initially investigated using embryonic bovine lung (EBL) cells cultured as a model. ZnO nanosheets were prepared by a hydrothermal method, and their structure and morphology were characterized, and their effects on EBL cell viability, oxidative stress, cell proliferation, and apoptosis were investigated. The results showed that 12.5 μg ml ZnO nanosheets can cause morphological changes in EBL cells. The toxic effects of ZnO nanosheets on EBL cells were time-dependent. Caspase-3 activity in EBL cells changed under certain conditions with the introduction of 25 μg ml ZnO nanomaterials, and EBL cell apoptosis was promoted. Under different concentration and time effects, ZnO nanosheets induced an increase in ROS levels in EBL cells, indicating that they have an oxidative damage effect on cells. The toxic effects of ZnO nanosheets on EBL cells were discussed, including concentration effect, time effect, and cytotoxic effect, which eventually led to cell oxidative damage.
在本研究中,最初以培养的胚胎牛肺(EBL)细胞为模型研究了ZnO纳米片的生物学效应。通过水热法制备了ZnO纳米片,对其结构和形态进行了表征,并研究了它们对EBL细胞活力、氧化应激、细胞增殖和凋亡的影响。结果表明,12.5μg/ml的ZnO纳米片可引起EBL细胞的形态变化。ZnO纳米片对EBL细胞的毒性作用具有时间依赖性。在引入25μg/ml的ZnO纳米材料的特定条件下,EBL细胞中的半胱天冬酶-3活性发生变化,促进了EBL细胞凋亡。在不同浓度和时间效应下,ZnO纳米片诱导EBL细胞中活性氧水平升高,表明它们对细胞具有氧化损伤作用。讨论了ZnO纳米片对EBL细胞的毒性作用,包括浓度效应、时间效应和细胞毒性效应,最终导致细胞氧化损伤。