Group for Nano and Biotechnological Applications, Faculty of Electrical Engineering, University of Ljubljana, Trzaska cesta 25, 1000 Ljubljana, Slovenia.
Institute of Biophysics, Faculty of Medicine, University of Ljubljana, Vrazov trg 2, 1000 Ljubljana, Slovenia.
Int J Mol Sci. 2020 Sep 24;21(19):7030. doi: 10.3390/ijms21197030.
Environmental or biomedical exposure to nanoparticles (NPs) can results in translocation and accumulation of NPs in the brain, which can lead to health-related problems. NPs have been shown to induce toxicity to neuronal cells through several direct mechanisms, but only a few studies have also explored the indirect effects of NPs, through consequences due to the exposure of neighboring cells to NPs. In this study, we analysed possible direct and indirect effects of NPs (polyacrylic acid (PAA) coated cobalt ferrite NP, TiO P25 and maghemite NPs) on immortalized mouse microglial cells and differentiated CAD mouse neuronal cells in monoculture (direct toxicity) or in transwell co-culture system (indirect toxicity). We showed that although the low NP concentrations (2-25 µg/mL) did not induce changes in cell viability, cytokine secretion or NF-κB activation of microglial cells, even low NP concentrations of 10 µg/mL can affect the cells and change their secretion of protein stress mediators. These can in turn influence neuronal cells in indirect exposure model. Indirect toxicity of NPs is an important and not adequately assessed mechanism of NP toxicity, since it not only affects cells on the exposure sites, but through secretion of signaling mediators, can also affect cells that do not come in direct contact with NPs.
环境或生物医学暴露于纳米颗粒 (NPs) 可导致 NPs 在大脑中的转移和积累,从而引发健康问题。已有研究表明,NPs 可通过几种直接机制诱导神经元细胞毒性,但仅有少数研究还探讨了 NPs 的间接影响,即由于邻近细胞暴露于 NPs 而产生的后果。在这项研究中,我们分析了 NPs(聚丙烯酸 (PAA) 包覆的钴铁氧体 NP、TiO2 P25 和磁赤铁矿 NP)对原代培养的小鼠小胶质细胞和分化的 CAD 小鼠神经元细胞的直接和间接影响(在单核培养物中[直接毒性]或在 Transwell 共培养系统中[间接毒性])。结果表明,尽管低 NP 浓度(2-25μg/mL)并未引起小胶质细胞活力、细胞因子分泌或 NF-κB 激活的变化,但即使是低浓度的 10μg/mL NP 也能影响细胞并改变其应激蛋白介质的分泌。这些反过来又会影响间接暴露模型中的神经元细胞。NP 的间接毒性是 NP 毒性的一个重要且未充分评估的机制,因为它不仅影响暴露部位的细胞,而且还可以通过分泌信号转导介质影响与 NPs 没有直接接触的细胞。