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带飞行时间质谱检测的全二维气相色谱法:氨基酸和有机酸三甲基硅烷基衍生物的分析及其在黑麦草样品代谢物分析中的应用

Comprehensive two-dimensional gas chromatography with time-of-flight mass spectrometry detection: analysis of amino acid and organic acid trimethylsilyl derivatives, with application to the analysis of metabolites in rye grass samples.

作者信息

Hope Janiece L, Prazen Bryan J, Nilsson Erik J, Lidstrom Mary E, Synovec Robert E

机构信息

Department of Chemistry, Center for Process Analytical Chemistry, Box 351700, University of Washington, Seattle, WA 98195-1700, USA.

出版信息

Talanta. 2005 Jan 30;65(2):380-8. doi: 10.1016/j.talanta.2004.06.025.

Abstract

First, standard mixtures of trimethylsilyl (TMS) derivatives of amino acid and organic acid are analyzed by comprehensive two-dimensional (2D) gas chromatography (GC) coupled to time-of-flight mass spectrometry (GC x GC/TOFMS) in order to illustrate important issues regarding application of the technique. Specifically of interest is the extent to which the peak capacity of the 2D separation space has been utilized and the procedure by which the derivative standards are identified in the 2D separations using the mass spectral information. The resulting 2D separation is found to make extensive use of the GC x GC separation space provided by the complementary stationary phases employed. Second, in order to demonstrate GC x GC/TOFMS on two real sample types, trimethylsilyl metabolite derivatives were analyzed from extracts of common lawn grass samples (i.e., perennial rye grass), as a means to provide insight into both the pre and post harvest physiology. Various chemical components in the two rye grass extract samples were found to either emerge or disappear in relation to the trauma response. For example, a significant difference in the peak for the TMS derivative of malic acid was found. The successful analysis of various components was readily facilitated by the 2D separation, while a 1D separation would have produced too much peak overlap, thus impeding the analysis. The importance of using a GC x GC separation approach for the analysis of complex samples, such as metabolite extracts, is therefore demonstrated. The real-time analysis capability of GC x GC/TOFMS for multidimensional metabolite analysis makes this technique well suited to the high-throughput analysis of metabolomic samples, especially compared to slower, stopped-flow type separation approaches.

摘要

首先,通过全二维气相色谱(GC)与飞行时间质谱联用(GC×GC/TOFMS)分析氨基酸和有机酸的三甲基硅烷基(TMS)衍生物的标准混合物,以阐明该技术应用中的重要问题。特别值得关注的是二维分离空间的峰容量被利用的程度,以及在二维分离中使用质谱信息鉴定衍生物标准品的过程。结果发现,所得的二维分离广泛利用了所采用的互补固定相提供的GC×GC分离空间。其次,为了在两种实际样品类型上展示GC×GC/TOFMS,分析了常见草坪草样品(即多年生黑麦草)提取物中的三甲基硅烷基代谢物衍生物,以此作为洞察收获前后生理学的一种手段。发现两种黑麦草提取物样品中的各种化学成分会因创伤反应而出现或消失。例如,发现苹果酸的TMS衍生物的峰有显著差异。二维分离很容易促进对各种成分的成功分析,而一维分离会产生过多的峰重叠,从而阻碍分析。因此,证明了使用GC×GC分离方法分析复杂样品(如代谢物提取物)的重要性。GC×GC/TOFMS用于多维代谢物分析的实时分析能力使该技术非常适合代谢组学样品的高通量分析,特别是与较慢的停流型分离方法相比。

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