Department of Chemistry and Applied Biosciences, ETH Zurich , CH-8093 Zurich, Switzerland.
Anal Chem. 2015 Mar 3;87(5):3087-93. doi: 10.1021/ac504796p. Epub 2015 Feb 13.
In recent years, breath analysis in real time has become a noninvasive alternative for the diagnosis of diseases and for molecular fingerprinting of exhaled breath. However, the techniques used lack the capabilities for proper identification of the compounds found in the exhalome. Here, we report the use of UHPLC-HRMS as a tool for the identification of several aldehydes (2-alkenals, 4-hydroxy-2-alkenals, and 4-hydroxy-2,6-alkadienals), biomarkers of lipid peroxidation, in exhaled breath condensate of three healthy subjects (N = 3). Some of the aldehydes studied have never been identified before. Their robust identification is based on retention times, on the generation of fragmentation trees from tandem mass spectra, and on the comparison of these parameters with standards. We also show that the identified compounds can be analyzed and confirmed by MS/MS in breath in real time and, therefore, they could be used as biomarkers for the rapid and noninvasive diagnosis of related diseases.
近年来,实时呼吸分析已成为一种非侵入性的替代方法,可用于疾病诊断和呼出气体的分子指纹图谱分析。然而,所使用的技术缺乏对呼气组中发现的化合物进行适当鉴定的能力。在这里,我们报告了使用 UHPLC-HRMS 作为工具,来鉴定三种健康受试者(N = 3)呼出冷凝物中的几种醛(2-烯醛、4-羟基-2-烯醛和 4-羟基-2,6-辛二烯醛),这些醛是脂质过氧化的生物标志物。其中一些醛以前从未被鉴定过。它们的可靠鉴定基于保留时间、串联质谱产生的碎片树以及与标准品的这些参数比较。我们还表明,可以通过实时呼气中的 MS/MS 对鉴定出的化合物进行分析和确认,因此它们可作为相关疾病快速、非侵入性诊断的生物标志物。