Tascon GmbH, Mendelstraße 17, D-48149 Münster, Germany.
Analyst. 2017 Jul 10;142(14):2631-2639. doi: 10.1039/c7an00399d.
The direct detection of nanoparticles in tissues at high spatial resolution is a current goal in nanotoxicology. Time-of-Flight Secondary Ion Mass Spectrometry (ToF-SIMS) is widely used for the direct detection of inorganic and organic substances with high spatial resolution but its capability to detect nanoparticles in tissue sections is still insufficiently explored. To estimate the applicability of this technique for nanotoxicological questions, comparative studies with established techniques on the detection of nanoparticles can offer additional insights. Here, we compare ToF-SIMS imaging data with sub-micrometer spatial resolution to fluorescence microscopy imaging data to explore the usefulness of ToF-SIMS for the detection of nanoparticles in tissues. SiO nanoparticles with a mean diameter of 25 nm, core-labelled with fluorescein isothiocyanate, were intratracheally instilled into rat lungs. Subsequently, imaging of lung cryosections was performed with ToF-SIMS and fluorescence microscopy. Nanoparticles were successfully detected with ToF-SIMS in 3D microanalysis mode based on the lateral distribution of SiO (m/z 75.96), which was co-localized with the distribution pattern that was obtained from nanoparticle fluorescence. In addition, the lateral distribution of protein (CN, m/z 26.00) and phosphate based signals (PO, m/z 78.96) originating from the tissue material could be related to the SiO lateral distribution. In conclusion, ToF-SIMS is suitable to directly detect and laterally resolve SiO nanomaterials in biological tissue at sufficient intensity levels. At the same time, information about the chemical environment of the nanoparticles in the lung tissue sections is obtained.
在高空间分辨率下直接检测组织中的纳米颗粒是当前纳米毒理学的目标。飞行时间二次离子质谱(ToF-SIMS)广泛用于以高空间分辨率直接检测无机和有机物质,但它在检测组织切片中的纳米颗粒方面的能力仍未得到充分探索。为了估计该技术在纳米毒理学问题上的适用性,与已建立的技术对纳米颗粒的检测进行比较研究可以提供更多的见解。在这里,我们将具有亚微米空间分辨率的 ToF-SIMS 成像数据与荧光显微镜成像数据进行比较,以探索 ToF-SIMS 在检测组织中纳米颗粒方面的有用性。平均直径为 25nm 的 SiO 纳米颗粒,用异硫氰酸荧光素标记为核心,经气管内滴注到大鼠肺部。随后,用 ToF-SIMS 和荧光显微镜对肺冷冻切片进行成像。在 3D 微分析模式下,基于 SiO(m/z75.96)的横向分布,成功地用 ToF-SIMS 检测到纳米颗粒,该分布与从纳米颗粒荧光获得的分布模式相吻合。此外,源自组织材料的蛋白质(CN,m/z26.00)和磷酸盐基信号(PO,m/z78.96)的横向分布也可以与 SiO 横向分布相关。总之,ToF-SIMS 适用于以足够的强度水平直接检测和横向解析生物组织中的 SiO 纳米材料。同时,还可以获得关于纳米颗粒在肺组织切片中化学环境的信息。