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Development of Chemical Ionisation Reaction Time-of-Flight Mass Spectrometry for the Analysis of Volatile Organic Compounds in Exhaled Breath

机译:化学电离反应飞行时间质谱技术的发展,用于分析呼出气中的挥发性有机化合物

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摘要

Breath is a mixture of nitrogen, oxygen, carbon dioxide, water vapour, inert gases, and a small fraction of trace volatile organic compounds (VOCs) in the parts per million by volume to parts per trillion by volume range. VOCs can be produced anywhere in the body as a result of physiological and pathophysiological processes, and are transported via the bloodstream to the lungs where they are exhaled in breath. On the basis that VOCs in breath are representative of VOCs in the blood and therefore biochemical processes occurring in the body, the analysis of exhaled breath may become a noninvasive tool for use in clinical practice. This thesis documents the development of the analytical technique of chemical ionisation reaction time-of-flight mass spectrometry (CIR-TOF-MS) for the analysis of VOCs in exhaled breath, exploring the challenges associated with breath sampling to its application in clinical studies. Initial work focused on the design of a suitable breath sampling device that coupled directly to the CIR-TOF-MS instrument to allow the on-line, real-time analysis of breath. The analysis of exhaled breath from healthy individuals allowed a common group of breath VOCs to be identified and quantified. The CIR-TOF-MS system was applied to a number of clinical trials examining the breath of individuals with cystic fibrosis (9 cystic fibrosis children, 4 healthy children), asthma (35 asthmatic subjects, 5 COPD, 28 healthy controls) and cancer (4 female cancer subjects, 10 healthy female controls), for which the latter study required the investigation of off-line breath collection. The analysis of VOCs emitted from bacterial and fungal cultures in vitro was also explored, as a means to support the hypothesis that the measurement of VOCs in exhaled breath could be used to identify infection status in vivo. Within these applications, CIR-TOF-MS was able to demonstrate that the chemical profile of breath has the potential to identify the presence of infection or disease.
机译:呼吸是氮气,氧气,二氧化碳,水蒸气,惰性气体和一小部分微量挥发性有机化合物(VOC)的混合物,其体积百万分之几到万亿分之几。由于生理和病理生理过程,VOC可以在体内任何地方产生,并通过血流输送到肺部,在呼吸时它们会被呼出。基于呼吸中的挥发性有机化合物代表血液中的挥发性有机化合物,因此是体内发生的生化过程的基础,呼出气的分析可能成为临床实践中使用的一种非侵入性工具。本文研究了化学电离反应飞行时间质谱分析技术(CIR-TOF-MS)的发展,用于分析呼出气中的VOC,探讨了呼吸取样对其在临床研究中的应用带来的挑战。最初的工作集中在设计合适的呼吸采样设备上,该设备直接连接到CIR-TOF-MS仪器,以进行实时的呼吸在线分析。对来自健康个体的呼气进行分析后,可以确定和量化一组常见的呼吸VOC。 CIR-TOF-MS系统已应用于许多临床试验中,检查患有囊性纤维化的个体(9名囊性纤维化儿童,4名健康儿童),哮喘(35名哮喘受试者,5名COPD,28名健康对照)和癌症( 4位女性癌症受试者,10位健康女性对照),后者的研究需要对离线呼吸收集进行调查。还探索了体外分析细菌和真菌培养物中释放的VOC的方法,以支持以下假设:呼出气中VOC的测量可用于识别体内感染状态。在这些应用中,CIR-TOF-MS能够证明呼吸的化学特征具有识别感染或疾病的潜力。

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    Willis, Kerry Ann;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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