GC-MS with ethyl chloroformate derivatization for comprehensive analysis of metabolites in serum and its application to human uremia

被引:58
|
作者
Tao, Xiumei [1 ,2 ]
Liu, Yumin [1 ]
Wang, Yihuang [3 ]
Qiu, Yunping [3 ]
Lin, Jingchao [1 ]
Zhao, Aihua [1 ]
Su, Mingming [1 ]
Jia, Wei [1 ,2 ]
机构
[1] Shanghai Jiao Tong Univ, Sch Pharm, Shanghai 200240, Peoples R China
[2] Shanghai Univ Tradit Chinese Med, Shanghai 201203, Peoples R China
[3] Shanghai Jiao Tong Univ, Shanghai Inst Syst Biomed, Shanghai 200240, Peoples R China
关键词
metabolic profiling; GC-MS; ethyl chloroformate; serum; multivariate statistical analysis; metabonomics; GC; bioanalytical methods; clinical/biomedical analysis;
D O I
10.1007/s00216-008-2220-8
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
An optimized method based on GC-MS with ethyl chloroformate derivatization has been developed for the comprehensive analysis of endogenous metabolites in serum. Twenty-two reference standards and serum samples were used to validate the proposed method. The correlation coefficient was higher than 0.9900 for each of the standards, and the LOD varied from 125 to 300 pg on-column. The analytical equipment exhibited good repeatability (RSD < 10%) for all of the standards. Both the repeatability and the within-48-h stability of the analytical method were satisfactory (RSD < 10%) for the 18 metabolites identified in the serum samples. Mean recovery was acceptable for the 18 metabolites, ranging from 70% to 120% with RSDs of less than 10%. Using the optimized protocol and a subsequent multivariate statistical technique, complete differentiation was achieved between the metabolic profile of uremic patients and that of age- and sex-matched normal subjects. Significantly decreased levels of valine, leucine, and isoleucine and increased levels of myristic acid and linoleic acid were observed in the patient group. This work demonstrated that this method is suitable for serum-based metabolic profiling studies.
引用
收藏
页码:2881 / 2889
页数:9
相关论文
共 50 条
  • [21] Rapid analysis of aldehydes by simultaneous microextraction and derivatization followed by GC-MS
    Ye, Qing
    Zheng, Dagui
    Liu, Linhai
    Hong, Liming
    JOURNAL OF SEPARATION SCIENCE, 2011, 34 (13) : 1607 - 1612
  • [22] Quantitative analysis of carbazoles and hydrocarbons in condensates and oils using comprehensive GC-MS/MS and comparative GC-MS analyses
    Easley, Daniella G.
    Malloy, Thomas B.
    Curiale, Joseph A.
    Bissada, K. K.
    ORGANIC GEOCHEMISTRY, 2022, 171
  • [23] Ethylchloroformate Derivatization for GC-MS Analysis of Resveratrol Isomers in Red Wine
    Di Fabio, Elisa
    Incocciati, Alessio
    Palombarini, Federica
    Boffi, Alberto
    Bonamore, Alessandra
    Macone, Alberto
    MOLECULES, 2020, 25 (20):
  • [24] Simultaneous analysis of acephate and methamidophos in human serum by improved extraction and GC-MS
    Adachi, Nobuyuki
    Kinoshita, Hiroshi
    Nishiguchi, Minori
    Takahashi, Motonori
    Ouchi, Harumi
    Minami, Takako
    Matsui, Kiyoshi
    Yamamura, Takehiko
    Motomura, Hiroyuki
    Ohtsu, Nao
    Yoshida, Shie
    Hishida, Shigeru
    FORENSIC TOXICOLOGY, 2008, 26 (02) : 76 - 79
  • [25] Simultaneous analysis of acephate and methamidophos in human serum by improved extraction and GC-MS
    Nobuyuki Adachi
    Hiroshi Kinoshita
    Minori Nishiguchi
    Motonori Takahashi
    Harumi Ouchi
    Takako Minami
    Kiyoshi Matsui
    Takehiko Yamamura
    Hiroyuki Motomura
    Nao Ohtsu
    Shie Yoshida
    Shigeru Hishida
    Forensic Toxicology, 2008, 26
  • [26] Optimized GC-MS metabolomics for the analysis of kidney tissue metabolites
    Misra, Biswapriya B.
    Upadhayay, Ram P.
    Cox, Laura A.
    Olivier, Michael
    METABOLOMICS, 2018, 14 (06)
  • [27] Comparison of GC-MS and GCxGC-MS in the Analysis of Human Serum Samples for Biomarker Discovery
    Winnike, Jason H.
    Wei, Xiaoli
    Knagge, Kevin J.
    Colman, Steven D.
    Gregory, Simon G.
    Zhang, Xiang
    JOURNAL OF PROTEOME RESEARCH, 2015, 14 (04) : 1810 - 1817
  • [28] Comparison of derivatization and chromatographic methods for GC-MS analysis of amino acid enantiomers in physiological samples
    Waldhier, Magdalena C.
    Dettmer, Katja
    Gruber, Michael A.
    Oefner, Peter J.
    JOURNAL OF CHROMATOGRAPHY B-ANALYTICAL TECHNOLOGIES IN THE BIOMEDICAL AND LIFE SCIENCES, 2010, 878 (15-16): : 1103 - 1112
  • [29] Metabolite analysis of human fecal water by gas chromatography/mass spectrometry with ethyl chloroformate derivatization
    Gao, Xianfu
    Pujos-Guillot, Estelle
    Martin, Jean-Francois
    Galan, Pilar
    Juste, Catherine
    Jia, Wei
    Sebedio, Jean-Louis
    ANALYTICAL BIOCHEMISTRY, 2009, 393 (02) : 163 - 175
  • [30] GC-MS analysis of organic acids in human urine in clinical settings: A study of derivatization and other analytical parameters
    Christou, Chrysoula
    Gika, Helen. G.
    Raikos, Nikolaos
    Theodoridis, Georgios
    JOURNAL OF CHROMATOGRAPHY B-ANALYTICAL TECHNOLOGIES IN THE BIOMEDICAL AND LIFE SCIENCES, 2014, 964 : 195 - 201