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Targeted Multiplex Imaging Mass Spectrometry in Transmission Geometry for Subcellular Spatial Resolution

机译:亚细胞空间分辨率传输几何中的靶向多重成像质谱

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摘要

Targeted multiplex Imaging Mass Spectrometry utilizes several different antigen-specific primary antibodies, each directly labeled with a unique photocleavable mass tag, to detect multiple antigens in a single tissue section. Each photocleavable mass tag bound to an antibody has a unique molecular weight and can be readily ionized by laser desorption ionization mass spectrometry. This manuscript describes a mass spectrometry method that allows imaging of targeted single cells within tissue using transmission geometry laser desorption ionization mass spectrometry. Transmission geometry focuses the laser beam on the back side of the tissue placed on a glass slide, providing a 2 μm diameter laser spot irradiating the biological specimen. This matrix-free method enables simultaneous localization at the sub-cellular level of multiple antigens using specific tagged antibodies. We have used this technology to visualize the co-expression of synaptophysin and two major hormones peptides, insulin and somatostatin, in duplex assays in beta and delta cells contained in a human pancreatic islet.
机译:靶向多重成像质谱技术利用几种不同的抗原特异性一抗,每种抗体直接用独特的光可裂解质量标签标记,以检测单个组织切片中的多种抗原。与抗体结合的每个可光裂解的质量标签具有独特的分子量,可以通过激光解吸电离质谱法轻易地电离。该手稿描述了一种质谱方法,该方法允许使用透射几何激光解吸电离质谱法对组织内的目标单细胞进行成像。传输几何结构将激光束聚焦在放置在载玻片上的组织的背面,从而提供直径2μm的激光点照射生物样本。这种无基质方法可使用特异性标记抗体同时定位于多种抗原的亚细胞水​​平。我们已使用该技术在人胰岛中包含的β和δ细胞的双重检测中,使突触素和两种主要激素肽(胰岛素和生长抑素)的共表达可视化。

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