Aix Marseille Univ, CNRS, IRD, INRA, Coll France, CEREGE, Aix-en-Provence, France.
International Consortium for the Environmental Implications of Nanotechnology iCEINT, CNRS-Duke University, Aix en Provence, France.
Sci Rep. 2018 Mar 13;8(1):4408. doi: 10.1038/s41598-018-21862-4.
In this methodological study, we demonstrated the relevance of 3D imaging performed at various scales for the ex vivo detection and location of cerium oxide nanomaterials (CeO-NMs) in mouse lung. X-ray micro-computed tomography (micro-CT) with a voxel size from 14 µm to 1 µm (micro-CT) was combined with X-ray nano-computed tomography with a voxel size of 63 nm (nano-CT). An optimized protocol was proposed to facilitate the sample preparation, to minimize the experimental artifacts and to optimize the contrast of soft tissues exposed to metal-based nanomaterials (NMs). 3D imaging of the NMs biodistribution in lung tissues was consolidated by combining a vast variety of techniques in a correlative approach: histological observations, 2D chemical mapping and speciation analysis were performed for an unambiguous detection of NMs. This original methodological approach was developed following a worst-case scenario of exposure, i.e. high dose of exposure with administration via intra-tracheal instillation. Results highlighted both (i) the non-uniform distribution of CeO-NMs within the entire lung lobe (using large field-of-view micro-CT) and (ii) the detection of CeO-NMs down to the individual cell scale, e.g. macrophage scale (using nano-CT with a voxel size of 63 nm).
在这项方法学研究中,我们展示了在不同尺度下进行的 3D 成像对于在体外检测和定位小鼠肺部中的氧化铈纳米材料(CeO-NMs)的相关性。我们将体素大小为 14μm 至 1μm 的 X 射线微计算机断层扫描(micro-CT)与体素大小为 63nm 的 X 射线纳米计算机断层扫描(nano-CT)相结合。提出了一种优化的方案,以促进样本制备、最小化实验伪影并优化暴露于金属基纳米材料(NMs)的软组织对比度。通过在相关方法中结合各种技术,整合了 NM 在肺组织中的生物分布的 3D 成像:进行了组织学观察、2D 化学映射和形态分析,以明确检测 NM。这种原始的方法学方法是在最坏情况的暴露(即通过气管内滴注进行高剂量暴露)之后开发的。结果突出了 CeO-NMs 在整个肺叶内的(i)不均匀分布(使用大视场 micro-CT)和(ii)在个体细胞尺度(例如巨噬细胞尺度)上的检测(使用体素大小为 63nm 的 nano-CT)。