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High-Contrast Imaging of Nanodiamonds in Cells byEnergy Filtered and Correlative Light-Electron Microscopy: Towarda Quantitative Nanoparticle-Cell Analysis

机译:细胞中纳米金刚石的高对比度成像能量过滤和相关光电子显微镜:向定量纳米细胞分析

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摘要

Fluorescent nanodiamonds (fNDs) represent an emerging class of nanomaterials offering great opportunities for ultrahigh resolution imaging, sensing and drug delivery applications. Their biocompatibility, exceptional chemical and consistent photostability renders them particularly attractive for correlative light-electron microscopy studies providing unique insights into nanoparticle-cell interactions. Herein, we demonstrate a stringent procedure to image and quantify fNDs with a high contrast down to the single particle level in cells. Individual fNDs were directly visualized by energy-filtered transmission electron microscopy, that is, inside newly forming, early endosomal vesicles during their cellular uptake processes as well as inside cellular organelles such as a mitochondrion. Furthermore, we demonstrate the unequivocal identification, localization, and quantification of individual fNDs in larger fND clusters inside intracellular vesicles. Our studies are of great relevance to obtain quantitative information on nanoparticle trafficking and their various interactions with cells, membranes, and organelles, which will becrucial to design-improved sensors, imaging probes, and nanotherapeuticsbased on quantitative data.
机译:荧光纳米金刚石(fND)代表了新兴的一类纳米材料,为超高分辨率成像,传感和药物输送应用提供了巨大的机会。它们的生物相容性,出色的化学性质和稳定的光稳定性使它们对于相关的光电子显微镜研究特别有吸引力,从而提供了对纳米粒子与细胞相互作用的独特见解。在本文中,我们展示了严格的程序以高对比度降低到细胞中单个颗粒的水平,对fND进行成像和量化。单个fNDs可通过能量过滤的透射电子显微镜直接观察,即在新形成的早期内体囊泡在其细胞摄取过程中以及在细胞器(例如线粒体)内部。此外,我们证明细胞内囊泡内较大fND簇中单个fND的明确鉴定,定位和定量。我们的研究对于获得有关纳米颗粒运输及其与细胞,膜和细胞器的各种相互作用的定量信息具有重要意义,这将是对于设计改进的传感器,成像探针和纳米疗法至关重要基于定量数据。

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