Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, 600 University Avenue R988, Toronto, Ontario M5G 1X5, Canada; Faculty of Pharmacy, Yarmouk University, Irbid, Jordan.
Lunenfeld-Tanenbaum Research Institute, Mount Sinai Hospital, 600 University Avenue R988, Toronto, Ontario M5G 1X5, Canada.
Anal Chim Acta. 2014 Oct 3;845:53-61. doi: 10.1016/j.aca.2014.06.012. Epub 2014 Jun 12.
Metabolomics is the identification and quantitation of small bio-molecules (metabolites) in biological samples under various environmental and genetic conditions. Mass spectrometry provides the unique opportunity for targeted identification and quantification of known metabolites by selective reaction monitoring (SRM). However, reproducibility of this approach depends on careful consideration of sample preparation, chemical classes, and stability of metabolites to be evaluated. Herein, we introduce and validate a targeted metabolite profiling workflow for cultured cells and tissues by liquid chromatography-triple quadrupole tandem mass spectrometry. The method requires a one-step extraction of water-soluble metabolites and targeted analysis of central metabolites that include glycolysis, amino acids, nucleotides, citric acid cycle, and the hexosamine biosynthetic pathway. The sensitivity, reproducibility and molecular stability of each targeted metabolite were assessed under experimental conditions. Quantitation of metabolites by peak area ratio was linear with a dilution over a 4 fold dynamic range with minimal deviation R(2)=0.98. Inter- and intra-day precision with cells and tissues had an average coefficient of variation <15% for cultured cell lines, and somewhat higher for mouse liver tissues. The method applied in triplicate measurements readily distinguished immortalized cells from malignant cells, as well as mouse littermates based on their hepatic metabolic profiles.
代谢组学是在各种环境和遗传条件下鉴定和定量生物样本中的小分子生物分子(代谢物)。质谱分析通过选择反应监测(SRM)为靶向鉴定和定量已知代谢物提供了独特的机会。然而,这种方法的重现性取决于对样品制备、化学类别以及待评估代谢物的稳定性的仔细考虑。在此,我们通过液相色谱-三重四极杆串联质谱法为培养细胞和组织引入并验证了一种靶向代谢物分析工作流程。该方法需要一步提取水溶性代谢物,并对包括糖酵解、氨基酸、核苷酸、柠檬酸循环和己糖胺生物合成途径在内的中心代谢物进行靶向分析。在实验条件下评估了每个靶向代谢物的灵敏度、重现性和分子稳定性。通过峰面积比定量,在 4 倍动态范围内进行稀释时具有线性关系,最小偏差 R(2)=0.98。细胞和组织的日内和日间精密度对于培养细胞系的平均变异系数 <15%,而对于小鼠肝组织则略高。该方法在重复测量中可根据其肝代谢谱轻松区分永生化细胞和恶性细胞,以及小鼠同窝仔。