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综合二维气相色谱平台比较用于呼气代谢物分析。

Comprehensive two-dimensional gas chromatographic platforms comparison for exhaled breath metabolites analysis.

机构信息

Molecular System, Organic & Biological Analytical Chemistry Group, University of Liège, Liège, Belgium.

Gembloux Agro-Bio Tech, University of Liège, Gembloux, Belgium.

出版信息

J Sep Sci. 2022 Sep;45(18):3542-3555. doi: 10.1002/jssc.202200164. Epub 2022 Aug 2.

Abstract

The high potential of exhaled breath for disease diagnosis has been highlighted in numerous studies. However, exhaled breath analysis is suffering from a lack of standardized sampling and analysis procedures, impacting the robustness of inter-laboratory results, and thus hampering proper external validation. The aim of this work was to verify compliance and validate the performance of two different comprehensive two-dimensional gas chromatography coupled to mass spectrometry platforms in different laboratories by monitoring probe metabolites in exhaled breath following the Peppermint Initiative guidelines. An initial assessment of the exhaled breath sampling conditions was performed, selecting the most suitable sampling bag material and volume. Then, a single sampling was performed using Tedlar bags, followed by the trapping of the volatile organic compounds into thermal desorption tubes for the subsequent analysis using two different analytical platforms. The thermal desorption tubes were first analyzed by a (cryogenically modulated) comprehensive two-dimensional gas chromatography system coupled to high-resolution time-of-flight mass spectrometry. The desorption was performed in split mode and the split part was recollected in the same tube and further analyzed by a different (flow modulated) comprehensive two-dimensional gas chromatography system with a parallel detection, specifically using a quadrupole mass spectrometer and a vacuum ultraviolet detector. Both the comprehensive two-dimensional gas chromatography platforms enabled the longitudinal tracking of the peppermint oil metabolites in exhaled breath. The increased sensitivity of comprehensive two-dimensional gas chromatography enabled to successfully monitor over a 6.5 h period a total of 10 target compounds, namely α-pinene, camphene, β-pinene, limonene, cymene, eucalyptol, menthofuran, menthone, isomenthone, and neomenthol.

摘要

呼气分析在疾病诊断中的巨大潜力已在众多研究中得到了强调。然而,呼气分析目前存在采样和分析程序缺乏标准化的问题,这影响了实验室间结果的稳定性,从而阻碍了适当的外部验证。本工作旨在按照薄荷倡议的指南,通过监测呼气中探针代谢物,验证两种不同的全二维气相色谱-质谱联用平台在不同实验室中的合规性和性能。首先对呼气采样条件进行了初步评估,选择了最合适的采样袋材料和体积。然后,使用特氟龙袋进行单次采样,随后将挥发性有机化合物捕集到热脱附管中,以便随后使用两种不同的分析平台进行分析。首先使用(低温调制)全二维气相色谱系统结合高分辨率飞行时间质谱仪对热脱附管进行分析。采用分流模式进行脱附,将分流部分收集在同一管中,并使用具有平行检测的另一种(流量调制)全二维气相色谱系统进行进一步分析,具体使用四极杆质谱仪和真空紫外检测器。这两种全二维气相色谱平台都能够对呼气中薄荷油代谢物进行纵向跟踪。全二维气相色谱的灵敏度提高使得能够在 6.5 小时的时间内成功监测到总共 10 种目标化合物,即α-蒎烯、莰烯、β-蒎烯、柠檬烯、对伞花烃、桉叶油醇、薄荷呋喃、薄荷酮、异薄荷酮和新薄荷醇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19de/9804543/42864e1dc6a8/JSSC-45-3542-g001.jpg

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