Solid-phase analytical derivatization for gas-chromatography-mass-spectrometry-based metabolomics

被引:23
|
作者
Takeo, Emi [1 ]
Sasano, Ryoichi [2 ]
Shimma, Shuichi [1 ]
Bamba, Takeshi [1 ,3 ]
Fukusaki, Eiichiro [1 ]
机构
[1] Osaka Univ, Dept Biotechnol, Grad Sch Engn, 2-1 Yamadaoka, Suita, Osaka 5650871, Japan
[2] AiSTI Sci Co Ltd, 120-6 Kuroda, Wakayama 6408341, Japan
[3] Kyushu Univ, Med Inst Bioregulat, Div Metabol, Res Ctr Trans Med,Higashi Ku, 3-1-1 Maidashi, Fukuoka 8128582, Japan
关键词
Derivatization; Sample preparation; Solid phase; Gas chromatography-mass spectrometry; Metabolomics; Amino acids; Organic acids; Organic bases; IN-SITU DERIVATIZATION; MICROEXTRACTION; SAMPLES; URINE; WATER;
D O I
10.1016/j.jbiosc.2017.07.006
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
A novel derivatization method for gas chromatography/mass spectrometry (GC/MS)-based metabolomics was developed, based on solid-phase analytical derivatization (SPAD) with methoximation followed by trimethylsilylation. This SPAD method realized derivatization on solid phases combining strong anion exchange with strong cation exchange. To omit a sample condensation process, GC/MS injection was performed using a large-volume injection mode. This mode uses a stomach-shaped insert, and enables a large quantity of sample to be vaporized and introduced into the GC/MS system. In the present study, several parameters were investigated for each SPAD step. The optimal derivatization conditions were determined to be 3-min-methoximation with 5 mu L of >5% methoxyamine solution, and 10-min-tri-methylsilylation with 25 mu L of N-methyl-N-trimethylsilyl-trifluoroacetamide (MSTFA). Derivatized analytes were effectively eluted with 25 mu L of n-hexane. The influences of coexisting substances were also investigated. Coexisting saccharides did not significantly affect the derivatization of analytes. Moreover, saccharides were efficiently washed out using 80% (v/v) acetonitrile in water. The influences of coexisting sodium chloride were negated by dilution of the sample solution with water. The developed method enables the derivatization of both anionic and cationic metabolites, and high-throughput sample preparation. The coverage of detectable metabolites for the developed method was similar to that of the conventional method. This is the first report of a SPAD-based human plasma metabolome analysis protocol. (C) 2017, The Society for Biotechnology, Japan. All rights reserved.
引用
收藏
页码:700 / 706
页数:7
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