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薄荷味呼气测试:使用 GC-MS 进行呼气采样和分析的基准协议。

The peppermint breath test: a benchmarking protocol for breath sampling and analysis using GC-MS.

机构信息

Division of Infection, Immunity and Respiratory Medicine, School of Biological Sciences, Faculty of Biology, Medicine and Health, University of Manchester, Manchester, United Kingdom.

Laboratory for Environmental and Life Sciences, University of Nova Gorica, Nova Gorica, Slovenia.

出版信息

J Breath Res. 2021 Jan 22;15(2). doi: 10.1088/1752-7163/abd28c.

Abstract

Exhaled breath contains hundreds of volatile organic compounds (VOCs) which offer the potential for diagnosing and monitoring a wide range of diseases. As the breath research field has grown, sampling and analytical practices have become highly varied between groups. Standardisation would allow meta-analyses of data from multiple studies and greater confidence in published results. Washout of VOCs from ingestion into the blood and subsequently breath could provide data for an initial assessment of inter-group performance. The Peppermint Initiative has been formed to address this task of standardisation. In the current study we aimed to generate initial benchmark values for thermal desorption-gas chromatography-mass spectrometry (TD-GC-MS) analysis of breath samples containing peppermint-derived VOCs using data from three independent European research groups. Initially, headspace analysis of peppermint oil capsules was performed to determine compounds of interest. Ten healthy participants were recruited by each three groups across Europe. The standard Peppermint protocol was followed. In brief, each participant provided a baseline breath sample prior to taking a peppermint capsule, with further samples collected at 60, 90, 165, 285 and 360 min following ingestion. Sampling and analytical protocols were different for each group, in line with their usual practice. Samples were analysed by TD-GC-MS and benchmarking values determined for the time taken for detected peppermint VOCs to return to baseline values. Sixteen compounds were identified in the capsule headspace, and all were confirmed in breath following ingestion of the peppermint capsules. Additionally, 2,3-dehydro-1,8-cineole was uniquely found in the breath samples, with a washout profile that suggested it was a product of metabolism of peppermint compounds. Five compounds (α-pinene, β-pinene, eucalyptol, menthol and menthone) were quantified by all three groups. Differences were observed between the groups, particularly for the recovery of menthone and menthol. The average time taken for VOCs to return to baseline was selected as the benchmark and were 377, 423, 533, 418 and 336 min for α-pinene, β-pinene, eucalyptol, menthone and menthol respectively. We have presented an initial set of easy-to-measure benchmarking values for assessing the performance of TD-GC-MS systems for the analysis of VOCs in breath. These values will be updated when more groups provide additional data.

摘要

呼气中包含数百种挥发性有机化合物 (VOCs),这些化合物具有诊断和监测广泛疾病的潜力。随着呼吸研究领域的发展,不同研究小组之间的采样和分析方法变得非常多样化。标准化将允许对来自多个研究的数据进行荟萃分析,并提高对已发表结果的信心。VOCs 从摄入到血液中再呼出,可以为评估组间性能提供初始数据。薄荷倡议的成立就是为了解决这一标准化任务。在目前的研究中,我们旨在使用来自三个独立的欧洲研究小组的数据,为使用热解吸气相色谱-质谱 (TD-GC-MS) 分析含有薄荷衍生 VOCs 的呼气样本生成初始基准值。首先,对薄荷油胶囊进行顶空分析以确定感兴趣的化合物。每个小组在欧洲各地招募了 10 名健康参与者。遵循标准的薄荷协议。简要地,每个参与者在服用薄荷胶囊之前提供一个基线呼气样本,在摄入后 60、90、165、285 和 360 分钟采集进一步的样本。每个小组的采样和分析方案都不同,这与他们的常规做法一致。样品通过 TD-GC-MS 进行分析,并确定检测到的薄荷 VOC 恢复到基线值所需的时间的基准值。在胶囊顶空中共鉴定出 16 种化合物,所有化合物在摄入薄荷胶囊后均在呼吸中得到确认。此外,2,3-去氢-1,8-桉树脑仅在呼吸样本中发现,其洗脱曲线表明它是薄荷化合物代谢的产物。所有三组都可以定量 5 种化合物(α-蒎烯、β-蒎烯、桉叶素、薄荷醇和薄荷酮)。各组之间观察到差异,特别是薄荷酮和薄荷醇的恢复情况。将 VOC 恢复到基线所需的平均时间选为基准值,分别为α-蒎烯、β-蒎烯、桉叶素、薄荷酮和薄荷醇的 377、423、533、418 和 336 分钟。我们提出了一组易于测量的基准值,用于评估用于分析呼气中 VOC 的 TD-GC-MS 系统的性能。当更多小组提供更多数据时,这些值将更新。

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