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湿度、CO 和 O 对 PTR-ToF-MS 实时定量呼吸生物标志物的影响。

Effects of humidity, CO and O on real-time quantitation of breath biomarkers by means of PTR-ToF-MS.

机构信息

Department of Anaesthesia and Intensive Care, University Medicine Rostock, Schillingallee 35, 18057 Rostock, Germany.

出版信息

J Breath Res. 2018 Mar 1;12(2):026016. doi: 10.1088/1752-7163/aa9eea.

Abstract

Proton transfer reaction time-of-flight mass spectrometry (PTR-ToF-MS) represents an attractive tool for the real-time analysis of VOC profiles in human breath. Quantification of breath VOCs by means of direct MS may be affected by the matrix, as human breath not only contains several hundred VOCs at the ppbV-pptV level, but is water saturated and contains percentage levels of CO. Investigation of breath biomarkers in clinical studies requires quantitative and comparable results. We therefore systematically assessed the effect of humidity, CO and O on the results of PTR-MS analysis. We investigated more than 20 VOCs, including aldehydes, ketones, aromatic compounds and hydrocarbons with different sample humidity, CO and O content. The influence of data processing (e.g. normalization to the HO ion count) was also addressed. An increase of the HO count of about 20% was observed when the humidity in the sample was increased to breath levels. Large differences regarding the measured VOC intensities were found between the dry and humid samples. Data normalization to the HO or water-clusters could not fully compensate for the humidity-dependent effects. However, as the determination of most VOCs linearly depends on the humidity over the whole investigated range, factor-based correction seems possible. The effects of CO were more pronounced in the dry samples than in the humid samples but only had a minor influence on the results. The same was true for the influence of O. For the reliable quantification of VOCs in clinical studies and for the standardization of VOC research, well-adapted calibration standards are required for PTR-MS analysis.

摘要

质子转移反应飞行时间质谱(PTR-ToF-MS)是一种很有吸引力的工具,可用于实时分析人体呼吸中的挥发性有机化合物(VOC)谱。通过直接 MS 对呼吸 VOC 进行定量可能会受到基质的影响,因为人体呼吸不仅含有数百种在 ppbV-pptV 水平的 VOC,而且还处于水饱和状态,并且含有百分比水平的 CO。在临床研究中对呼吸生物标志物的研究需要定量和可比的结果。因此,我们系统地评估了湿度、CO 和 O 对 PTR-MS 分析结果的影响。我们研究了 20 多种 VOC,包括醛、酮、芳香族化合物和具有不同样品湿度、CO 和 O 含量的烃类。还研究了数据处理(例如归一化为 HO 离子计数)的影响。当样品中的湿度增加到呼吸水平时,HO 计数增加了约 20%。在干燥和潮湿样品之间,发现测量的 VOC 强度存在很大差异。将数据归一化为 HO 或水团簇不能完全补偿湿度相关的影响。然而,由于大多数 VOC 的测定在整个研究范围内线性依赖于湿度,因此似乎可以进行基于因子的校正。CO 的影响在干燥样品中比在潮湿样品中更为明显,但对结果的影响较小。O 的影响也是如此。对于临床研究中 VOC 的可靠定量和 VOC 研究的标准化,PTR-ToF-MS 分析需要适应性强的校准标准。

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