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通过气相色谱/燃烧/同位素比质谱法对富集氨基酸进行化合物特异性 15N/14N- 比分析时减少记忆效应的实用建议。

Practical recommendations for the reduction of memory effects in compound-specific 15N/14N-ratio analysis of enriched amino acids by gas chromatography/combustion/isotope ratio mass spectrometry.

机构信息

German Institute of Human Nutrition in Potsdam-Rehbruecke (DIfE), Arthur-Scheunert-Allee 114-116, 14558 Nuthetal, Germany.

出版信息

Rapid Commun Mass Spectrom. 2012 Jan 30;26(2):195-204. doi: 10.1002/rcm.5319.

Abstract

Gas chromatography/combustion/isotope ratio mass spectrometry (GC-C-IRMS) is a highly sensitive approach which allows the analysis of the (13)C/(12)C and (15)N/(14)N isotope composition of amino acids in the range of natural abundance or in slightly (13)C- and (15)N-enriched samples. However, the accuracy of measurements remains a permanent challenge. Here we show the effect of the presence of slightly (15)N-enriched compounds in physiological samples on the accuracy and reproducibility of (15)N-abundances of amino acids within or between analytical runs. We spiked several individual amino acids with the respective (15)N-labelled isotopomer and measured the (15)N/(14)N ratios of other amino acids in the same sample or in the following analytical runs. Intra- and inter-run memory effects can be observed in (15)N/(14)N ratios of amino acids. Sample throughput is reduced when cleaning runs using standard mixtures are required to restore initial conditions after runs of samples with (15)N-enriched analytes. Possible reasons for the observed phenomenon and its implications for work in the lower (15)N-enrichment range (<0.5 APE) are discussed and include different aspects of gas chromatography, derivatisation, and hot catalytic metal surface effects. Results need to be interpreted with caution if complex physiological samples contain (15)N-enriched amino acids beyond 500‰ δ(15)N (~0.18 APE).

摘要

气相色谱/燃烧/同位素比质谱(GC-C-IRMS)是一种高度灵敏的方法,可分析天然丰度或略微(13)C 和(15)N 富集样品中氨基酸的(13)C/(12)C 和(15)N/(14)N 同位素组成。然而,测量的准确性仍然是一个持久的挑战。在这里,我们展示了生理样品中存在略微(15)N 富集化合物对氨基酸(15)N 丰度的准确性和重现性的影响,无论是在同一分析运行内还是之间。我们用相应的(15)N 标记同位素体对几个单个氨基酸进行了标记,并测量了同一样品或后续分析运行中其他氨基酸的(15)N/(14)N 比值。可以观察到氨基酸(15)N/(14)N 比值的内-和运行间记忆效应。如果需要使用标准混合物进行清洁运行以在运行(15)N 富集分析物的样品后恢复初始条件,则会降低样品通量。讨论了观察到的现象的可能原因及其对较低(15)N 富集范围(<0.5 APE)工作的影响,包括气相色谱、衍生化和热催化金属表面效应的不同方面。如果复杂的生理样品中含有超过 500‰ δ(15)N(~0.18 APE)的(15)N 富集氨基酸,则需要谨慎解释结果。

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