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Applications of a confined DART (direct analysis in real time) ion source for online in vivo analysis of human breath

机译:受限DART(实时直接分析)离子源在人呼吸在线体内分析中的应用

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Human breath is composed of many volatile metabolites that can potentially provide information about a person's health status. A sensitive assay to identify these volatile organic compounds as biomarkers is ideal and important for early detection of many diseases. However, the diagnosis through online breath analysis based on mass spectrometry is difficult due to the low concentration of pertinent compounds in breath. The DART (direct analysis in real time) ion source is a novel atmospheric pressure ionization technique, which can efficiently ionize gaseous, liquid and solid samples with high throughput. A major problem in analysis of gaseous samples is its poor detection sensitivity due to open-air sampling. Recently, a confined DART ion source (cDART) was developed, where the plasma generated by the atmospheric pressure glow discharge ionizes gas-phase molecules in a Tee-shaped flow tube instead of open air. It leads to a significant increase of the ionization efficiency of gaseous samples. In this study, the cDART source was modified and applied in online analysis of exhaled breath. The limit of detection of the improved cDART source was determined to be at the level of low ppb. The cDART source was used in the real-time monitoring of an oral anesthetic drug. The concentration variations of two active ingredients in exhaled breath, menthol and benzocaine, and their metabolites with time were obtained. The results show that the cDART ion source is a powerful analytical tool to provide high sensitivity and high throughput analysis for volatile organic compounds in human breath, and can find potential applications in clinical diagnosis and therapy.
机译:人的呼吸由许多挥发性代谢物组成,可以潜在地提供有关人的健康状况的信息。鉴定这些挥发性有机化合物作为生物标志物的灵敏测定法对于许多疾病的早期发现是理想且重要的。但是,由于相关化合物在呼吸中的浓度较低,因此难以通过基于质谱的在线呼吸分析进行诊断。 DART(实时直接分析)离子源是一种新颖的大气压电离技术,可以高效率高效地电离气态,液态和固态样品。气态样品分析中的主要问题是由于露天采样导致检测灵敏度差。最近,开发了一种受限的DART离子源(cDART),其中大气压辉光放电产生的等离子体将Tee形流量管中的气相分子电离,而不是露天。这导致气态样品的电离效率显着提高。在这项研究中,修改了cDART来源并将其应用于呼出气的在线分析。改进的cDART源的检测限被确定为低ppb。 cDART源用于实时监测口服麻醉药。获得了呼出气中两种活性成分薄荷醇和苯佐卡因及其代谢产物随时间的浓度变化。结果表明,cDART离子源是一种强大的分析工具,可为人呼吸中的挥发性有机化合物提供高灵敏度和高通量分析,并可以在临床诊断和治疗中找到潜在的应用。

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