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Detection of acetone and isoprene in human breath using a combination of thermal desorption and selected ion flow tube mass spectrometry

机译:结合热脱附和选定离子流管质谱法检测人呼吸中的丙酮和异戊二烯

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The measurement of volatile chemicals in human exhalant (breath analysis) has recently emerged as a non-invasive technique with the potential for the early diagnosis of disease. A common method of volatile chemical collection is to capture gases onto a solid phase sorbent followed, at a later time, by thermal release and analysis. This technique, termed thermal desorption (TD), may be a useful means to collect and store breath volatiles in a clinical setting prior to analysis. TD is, however, normally used in conjunction with gas chromatography (TD-GC) which results in slow analysis times and the required use of chemical standards. The new technique of selected ion flow tube mass spectrometry (SIFT-MS) offers a more rapid analysis process without the need for standards. SIFT-MS is normally used to analyze gas concentration in real-time and it is unclear whether combined TD and SIFT-MS can be successfully employed for breath analysis. We found that there was an approximate I to I concordance between levels of isoprene or acetone in the breath of 12 healthy volunteers measured either using real-time SIFT-MS or offline using a combination of SIFT-MS and TD (TD-SIFT-MS). The use of higher volumes of human breath did impact TD-SIFT-MS measurements of isoprene (but not acetone) with an apparent ceiling effect being observed. Nevertheless our findings demonstrate the potential for breath analysis using a combination of TD and SIFT-MS, an approach which may find utility in a clinical setting which does not allow online analysis of breath.
机译:人体呼出气中挥发性化学物质的测量(呼吸分析)最近作为一种非侵入性技术出现,具有早期诊断疾病的潜力。挥发性化学物质收集的常用方法是将气体捕获到固相吸附剂上,随后再进行热释放和分析。这项称为热脱附(TD)的技术可能是在分析之前在临床环境中收集和储存呼吸挥发物的有用手段。但是,TD通常与气相色谱法(TD-GC)结合使用,这会导致分析时间变慢和所需的化学标准品使用。选定的离子流管质谱仪(SIFT-MS)的新技术无需标准液即可提供更快的分析过程。 SIFT-MS通常用于实时分析气体浓度,尚不清楚TD和SIFT-MS的组合能否成功用于呼吸分析。我们发现,使用实时SIFT-MS或通过结合使用SIFT-MS和TD(TD-SIFT-MS)进行离线测量的12位健康志愿者的异戊二烯或丙酮水平之间存在近似的I至I一致性。 )。使用较大体积的人的呼吸确实会影响TD-SIFT-MS对异戊二烯(而非丙酮)的测量,并观察到明显的天花板效应。尽管如此,我们的发现证明了结合使用TD和SIFT-MS进行呼吸分析的潜力,这种方法可能会在不允许在线分析呼吸的临床环境中找到实用性。

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