从神经干细胞中定量研究二氧化钛纳米颗粒的胞吐作用。
A quantitative study of exocytosis of titanium dioxide nanoparticles from neural stem cells.
机构信息
Institute of Nanochemistry and Nanobiology, Shanghai University, Shanghai, China.
出版信息
Nanoscale. 2013 Jun 7;5(11):4737-43. doi: 10.1039/c3nr00796k. Epub 2013 Apr 18.
Nanoparticles (NPs) have been widely studied and applied in biomedicine and other fields. It is important to know the basic process of interaction between NPs and cells in terms of cellular endocytosis and exocytosis. However, little attention has been paid to the cellular exocytosis of NPs. Herein, using a multi-step cellular subculture method, we ascertain quantitatively the endocytosis and exocytosis of widely used TiO2 NPs using the neural stem cells (NSC) as a cellular model and ICP-AES as an analytic measure. Irrespective of the type and dose of TiO2 NPs, approximately 30% of the total TiO2 NPs entered NSCs after 48 h incubation. In the first 24 h after removing TiO2NPs, from the culture medium, about 35.0%, 34.6% and 41.7% of NP1 (50 nm), NP2 (30 nm) and NTs (nanotubes, 100 nm × 4-6 nm) were released (exocytosed) from cells, respectively. The release decreased over time, and became negligible at 72 h. Exocytosis did not happen during cell division. In addition, our results suggested that both endocytosis and exocytosis of TiO2NPs were energy-dependent processes, and NPs uptake by cells was influenced by serum proteins. Furthermore, we achieved primary dynamic confocal imaging of the exocytosis, allowing tracking of TiO2 NPs from NSCs. These findings may benefit studies on nanotoxicology and nanomedicine of TiO2 NPs.
纳米粒子(NPs)在生物医学和其他领域得到了广泛的研究和应用。了解 NPs 与细胞之间的基本相互作用过程,包括细胞内吞作用和外排作用,是非常重要的。然而,人们对 NPs 的细胞外排作用关注甚少。在此,我们使用多步细胞亚培养方法,以神经干细胞(NSC)为细胞模型,采用电感耦合等离子体原子发射光谱法(ICP-AES)作为分析手段,定量确定了广泛使用的 TiO2 NPs 的内吞作用和外排作用。无论 TiO2 NPs 的类型和剂量如何,在孵育 48 h 后,约有 30%的 TiO2 NPs 进入 NSCs。在从培养基中去除 TiO2NPs 的前 24 h 内,NP1(50nm)、NP2(30nm)和 NTs(纳米管,100nm×4-6nm)的 NP 分别有 35.0%、34.6%和 41.7%(外排)从细胞中释放出来。随着时间的推移,释放量减少,72 h 时可忽略不计。细胞分裂过程中不会发生外排作用。此外,我们的结果表明,TiO2NPs 的内吞作用和外排作用都是能量依赖的过程,细胞对 NPs 的摄取受血清蛋白的影响。此外,我们实现了外排作用的初步动态共聚焦成像,能够从 NSCs 中跟踪 TiO2 NPs。这些发现可能有益于 TiO2 NPs 的纳米毒理学和纳米医学研究。