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Ag-NPs induce apoptosis, mitochondrial damages and MT3/OSGIN2 expression changes in an in vitro model of human dental-pulp-stem-cells-derived neurons

机译:AG-NPS诱导人牙髓 - 干细胞衍生神经元体外模型中的细胞凋亡,线粒体损伤和MT3 / OSPIN2表达变化

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Silver nanoparticles (Ag-NPs) are one of the most popular nanotechnologies because of their unique antibacterial and antifungal properties. Given their increasing use in a wide range of commercial, biomedical and food products, exposure to Ag-NPs is now a reality in people's lives. However, there is a serious lack of information regarding their potential toxic effects in the central nervous system. In this study, we investigated the biocompatibility of "homemade" Ag-NPs in an in vitro model of human neurons derived from dental pulp mesenchymal stem cells. Our results showed that acute exposure to Ag-NPs cause cytotoxicity, by triggering cell apoptosis, damaging neuronal connections, affecting the mitochondrial activity and changing the mRNA expression level of MT3 and OSGIN2, two genes involved in heavy metals metabolism and cellular growth during oxidative stress conditions. Further studies are needed to understand the molecular mechanisms and the physiological consequences underlying Ag-NPs exposure. (C) 2018 Elsevier B.V. All rights reserved.
机译:银纳米粒子(Ag-NPS)是最受欢迎的纳米技术之一,因为它们独特的抗菌和抗真菌性能。鉴于他们在广泛的商业,生物医学和食品中使用的日益增长的是,暴露于AG-NPS现在是人们生活中的现实。然而,在中枢神经系统中严重缺乏有关其潜在毒性作用的信息。在这项研究中,我们研究了在源自牙髓间充质干细胞的人神经元的体外模型中“自制”Ag-NP的生物相容性。我们的研究结果表明,通过触发细胞凋亡,损伤神经元连接,影响线粒体活性并改变MT3和OSGIN2的mRNA表达水平,致氧化胁迫下涉及重金属代谢和细胞生长的细胞凋亡,影响线粒体活性和改变MR3和OSGIN2的mRNA表达水平的细胞毒性导致细胞毒性。状况。需要进一步的研究来了解Ag-NPS暴露的分子机制和生理后果。 (c)2018 Elsevier B.v.保留所有权利。

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