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Compositional Mapping of the Surface and Interior of Mammalian Cells at Submicrometer Resolution

机译:亚微米分辨率下哺乳动物细胞表面和内部的成分映射

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We present progress toward imaging of chemical species within intact mammalian cells using secondary ion mass spectrometry, including the simultaneous mapping of subcellular elemental and molecular species along with intrinsic membrane-specific cellular markers. Results from imaging both the cell surface and cell interior exposed by site-specific focused ion beam milling demonstrate that in-plane resolutions of approximately 400-500 nm can be achieved. The results from mapping cell surface phosphatidylcholine and several other molecular ions present in the cells establish that spatially resolved chemical signatures of individual cells can be derived from novel multivariate analysis and classification of the molecular images obtained at different m/z ratios. The methods we present here for specimen preparation and chemical imaging of cell interiors provide the foundation for obtaining 3D molecular maps of unstained mammalian cells, with particular relevance for probing the subcellular distributions of small molecules, such as drugs and metabolites.
机译:我们目前在使用次级离子质谱技术对完整哺乳动物细胞内的化学物种进行成像方面的进展,包括同时绘制亚细胞元素和分子物种以及固有的膜特异性细胞标记物。通过定点聚焦离子束铣削曝光的细胞表面和细胞内部的成像结果表明,可以实现约400-500 nm的面内分辨率。绘制细胞表面磷脂酰胆碱和细胞中存在的其他几种分子离子的图谱结果表明,单个细胞的空间分辨化学特征可以从新颖的多变量分析和以不同m / z比获得的分子图像分类中获得。我们在此介绍的用于样品制备和细胞内部化学成像的方法为获得未染色的哺乳动物细胞的3D分子图奠定了基础,尤其与探索小分子(例如药物和代谢物)的亚细胞分布有关。

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