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Correlative Light-Electron Microscopy of Lipid-Encapsulated Fluorescent Nanodiamonds for Nanometric Localization of Cell Surface Antigens

机译:脂封装荧光纳米金刚胺的相关光电子显微镜,用于细胞表面抗原纳米定位

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Containing an ensemble of nitrogen-vacancy centers in crystal matrices, fluorescent nanodiamonds (FNDs) are a new type of photostable markers that have found wide applications in light microscopy. The nanomaterial also has a dense carbon core, making it visible to electron microscopy. Here, we show that FNDs encapsulated in biotinylated lipids (bLs) are useful for subdiffraction imaging of antigens on cell surface with correlative light-electron microscopy (CLEM). The lipid encapsulation enables not only good dispersion of the particles in biological buffers but also high specific labeling of live cells. By employing the bL-encapsulated FNDs to target CD44 on HeLa cell surface through biotin-mediated immunostaining, we obtained the spatial distribution of these antigens by CLEM with a localization accuracy of similar to 50 nm in routine operations. A comparative study with dual-color imaging, in which CD44 was labeled with FND and MICA/MICB was labeled with Alexa Fluor 488, demonstrated the superior performance of FNDs as fluorescent fiducial markers for CLEM of cell surface antigens.
机译:含有晶体基质中的氮空位中心的集合,荧光纳米金刚石(FNDS)是一种新型的光稳定标记,在光学显微镜下发现了广泛的应用。纳米材料也具有致密的碳芯,使电子显微镜可见。在这里,我们表明封装在生物素化的脂质(BLS)中的FNDS用于具有相关的光 - 电子显微镜(CLEM)的细胞表面上的抗原的分布成像。脂质包封不仅使颗粒在生物缓冲液中良好的分散,而且具有高特异性细胞的特异性标记。通过使用BL-包封的Fnds通过生物素介导的免疫染色对HeLa细胞表面上的CD44靶向CD44,我们通过克隆得到这些抗原的空间分布,其定位精度类似于常规操作中的50nm。用Alexa Fluor 488标记了用FND和云母/ MICB标记CD44的双色成像的对比研究,用Alexa Flul 488标记了Fnds作为细胞表面抗原克隆的荧光基准标记的优异性能。

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