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Metabolic Analysis at the Nanoscale with Multi‐Isotope Imaging Mass Spectrometry (MIMS)

机译:纳米级的代谢分析用多同位素成像质谱法(MIMS)

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摘要

Incorporation of a stable‐isotope metabolic tracer into cells or tissue can be followed at submicron resolution by multi‐isotope imaging mass spectrometry (MIMS), a form of imaging secondary ion microscopy optimized for accurate isotope ratio measurement from microvolumes of sample (as small as ~30 nm across). In a metabolic MIMS experiment, a cell or animal is metabolically labeled with a tracer containing a stable isotope. Relative accumulation of the heavy isotope in the fixed sample is then measured as an increase over its natural abundance by MIMS. MIMS has been used to measure protein turnover in single organelles, track cellular division in vivo, visualize sphingolipid rafts on the plasma membrane, and measure dopamine incorporation into dense-core vesicles, among other biological applications. In this article, we introduce metabolic analysis using NanoSIMS by focusing on two specific applications: quantifying protein turnover in single organelles of cultured cells and tracking cell replication in mouse tissues in vivo. These examples illustrate the versatility of metabolic analysis with MIMS.
机译:通过多同位素成像质谱法(MIMS),通过多同位素成像质谱(MIMS)掺入细胞或组织中的稳定同位素代谢示踪剂,其成像二次离子显微镜的形式优化,用于从微伏样品(小于)的精确同位素比测量〜30 nm跨越)。在代谢MIMS实验中,细胞或动物是用含有稳定同位素的示踪剂来标记的。然后测量固定样品中沉重同位素的相对积聚作为MIMS的天然丰度的增加。 MIMS已被用于测量单个细胞器中的蛋白质转换,在体内轨道细胞分裂,在质膜上可视化鞘脂筏,并将多巴胺掺入致密核囊泡中,在其它生物学应用中。在本文中,通过专注于两种特定应用,我们使用纳米烃来引入代谢分析:量化培养细胞单个细胞中的蛋白质转换,并在体内小鼠组织中跟踪细胞复制。这些实施例说明了MIMS代谢分析的多功能性。

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