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Correlated optical and isotopic nanoscopy

机译:相关的光学和同位素纳米技术

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The isotopic composition of different materials can be imaged by secondary ion mass spectrometry. In biology, this method is mainly used to study cellular metabolism and turnover, by pulsing the cells with marker molecules such as amino acids labelled with stable isotopes (N-15, C-13). The incorporation of the markers is then imaged with a lateral resolution that can surpass 100 nm. However, secondary ion mass spectrometry cannot identify specific subcellular structures like organelles, and needs to be correlated with a second technique, such as fluorescence imaging. Here, we present a method based on stimulated emission depletion microscopy that provides correlated optical and isotopic nanoscopy (COIN) images. We use this approach to study the protein turnover in different organelles from cultured hippocampal neurons. Correlated optical and isotopic nanoscopy can be applied to a variety of biological samples, and should therefore enable the investigation of the isotopic composition of many organelles and subcellular structures.
机译:不同材料的同位素组成可以通过二次离子质谱法成像。在生物学中,该方法主要用于通过用标记分子(例如被稳定同位素标记的氨基酸(N-15,C-13))对细胞进行脉冲来研究细胞的代谢和更新。然后以超过100 nm的横向分辨率对标记的掺入成像。但是,二次离子质谱无法识别特定的亚细胞结构,如细胞器,需要与第二种技术(例如荧光成像)相关联。在这里,我们提出了一种基于受激发射损耗显微镜的方法,该方法提供了相关的光学和同位素纳米显微镜(COIN)图像。我们使用这种方法来研究来自海马神经元的不同细胞器中的蛋白质更新。相关的光学和同位素纳米技术可以应用于多种生物样品,因此应该能够研究许多细胞器和亚细胞结构的同位素组成。

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