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Extraction and Quantitation of Ketones and Aldehydes from Mammalian Cells Using Fluorous Tagging and Capillary LC-MS

机译:使用荧光标记和毛细管LC-MS从哺乳动物细胞中提取和定量酮和醛

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The extraction and quantitation of carbonyl metabolites from cell lysate was accomplished using a carbonyl-reactive fluorous tag and capillary liquid chromatography coupled to mass spectrometry (capLC-MS). Selective fluorous tagging for ketones and aldehydes provided a 30-fold increase in sensitivity using electrospray ionization MS. Separation of fluorous tagged carbonyl resulted in good separation of all components, and tandem MS was able to differentiate structural carbonyl isomers. The average limit of detection for carbonyl standards was 37 nM (range 1.5-250 nM), with linearity of R-2 > 0.99. Reproducibility for metabolites in cell lysate averaged 9% RSD. Human aortic endothelial cells (HAECs) were exposed to varying levels of glucose, and their carbonyl metabolite levels were quantified. Significant metabolite changes were seen in glycolysis and the propanoate pathway from a glucose challenge. Using an untargeted approach, 120 carbonyl metabolites were found to change in hyperglycemic HAECs. From this list of compounds, multiple metabolites from the pentose phosphate and tryptophan metabolic pathways were discovered. This system provides excellent sensitivity and quantitation of carbonyl metabolites without the need for isotope standards or labels.
机译:使用羰基反应性荧光标签和毛细管液相色谱-质谱联用技术(capLC-MS),可以从细胞裂解物中提取和定量羰基代谢物。使用电喷雾电离质谱仪对酮和醛进行选择性荧光标记,灵敏度提高了30倍。氟标记的羰基化合物的分离导致所有组分的良好分离,并且串联MS能够区分羰基结构异构体。羰基标准品的平均检出限为37 nM(范围为1.5-250 nM),线性度R-2> 0.99。细胞裂解物中代谢物的重现性平均为9%RSD。将人主动脉内皮细胞(HAEC)暴露于变化的葡萄糖水平,并对它们的羰基代谢产物水平进行定量。在糖酵解和葡萄糖激发的丙酸酯途径中观察到重要的代谢物变化。使用非靶向方法,发现高血糖HAECs中有120个羰基代谢物发生变化。从该化合物列表中,发现了戊糖磷酸和色氨酸代谢途径的多种代谢物。该系统无需羰基同位素标准品或标记物即可提供出色的灵敏度和对羰基代谢产物的定量。

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