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通过流式细胞术检测细胞中的二氧化钛纳米颗粒。

Detection of TiO2 nanoparticles in cells by flow cytometry.

作者信息

Zucker Robert Martin, Daniel Kaitlin Marie

机构信息

Toxicology Assessment Division, Office of Research and Development, National Health and Environmental Effects Research Laboratory, US Environmental Protection Agency, Research Triangle Park, NC, USA.

出版信息

Methods Mol Biol. 2012;906:497-509. doi: 10.1007/978-1-61779-953-2_40.

Abstract

Evaluation of the potential hazard of man-made nanomaterials has been hampered by a limited ability to observe and measure nanoparticles in cells. A FACSCalibur™ flow cytometer was used to measure changes in light scatter from cells after incubation with TiO(2) nanoparticle. Both the side scatter and forward scatter changed substantially in response to the TiO(2). Between 0.1 and 30 μg/mL TiO(2), the side scatter increased sequentially while the forward scatter decreased, presumably due to substantial light reflection by the TiO(2) particles. At the lowest concentrations of TiO(2) (0.1-0.3 μg/mL), the flow cytometer apparently could detect as few as 5-10 nanoparticles per cell as shown using dark field microscopy. The influence of nanoparticles on the cell cycle was detected by nonionic detergent lysis of nanoparticle-incubated cells. Viability of nanoparticle-treated cells was determined by PI exclusion.These data suggest that the uptake of nanoparticles within cells can be monitored using flow cytometry and confirmed by dark field microscopy. This approach may help fill a critical need to assess the relationship between nanoparticle dose and cellular toxicity. Such experiments could potentially be performed quickly and easily using the flow cytometer to measure both nanoparticle uptake and cellular health.

摘要

对人造纳米材料潜在危害的评估因在细胞中观察和测量纳米颗粒的能力有限而受阻。使用FACSCalibur™流式细胞仪测量与TiO₂纳米颗粒孵育后细胞光散射的变化。侧向散射和前向散射均因TiO₂而发生显著变化。在0.1至30μg/mL的TiO₂浓度范围内,侧向散射依次增加,而前向散射减少,这可能是由于TiO₂颗粒的大量光反射所致。在最低浓度的TiO₂(0.1 - 0.3μg/mL)下,如使用暗场显微镜所示,流式细胞仪显然能够检测到每个细胞中低至5 - 10个纳米颗粒。通过对纳米颗粒孵育细胞进行非离子去污剂裂解来检测纳米颗粒对细胞周期的影响。通过PI排除法测定纳米颗粒处理细胞的活力。这些数据表明,可以使用流式细胞术监测细胞内纳米颗粒的摄取,并通过暗场显微镜进行确认。这种方法可能有助于满足评估纳米颗粒剂量与细胞毒性之间关系的关键需求。使用流式细胞仪测量纳米颗粒摄取和细胞健康状况,此类实验可能会快速且轻松地进行。

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