Department of Sensory Analytics and Technologies, Fraunhofer Institute for Process Engineering and Packaging IVV, Giggenhauser Straße 35, 85354 Freising, Germany.
Department of Chemistry and Pharmacy, Chair of Aroma and Smell Research, Friedrich-Alexander-Universität Erlangen-Nürnberg, Henkestraße 9, 91054 Erlangen, Germany.
Molecules. 2021 Sep 11;26(18):5514. doi: 10.3390/molecules26185514.
The detection of chemical compounds in exhaled human breath presents an opportunity to determine physiological state, diagnose disease or assess environmental exposure. Recent advancements in metabolomics research have led to improved capabilities to explore human metabolic profiles in breath. Despite some notable challenges in sampling and analysis, exhaled breath represents a desirable medium for metabolomics applications, foremost due to its non-invasive, convenient and practically limitless availability. Several breath-based tests that target either endogenous or exogenous gas-phase compounds are currently established and are in practical and/or clinical use. This review outlines the concept of breath analysis in the context of these unique tests and their applications. The respective breath biomarkers targeted in each test are discussed in relation to their physiological production in the human body and the development and implementation of the associated tests. The paper concludes with a brief insight into prospective tests and an outlook of the future direction of breath research.
呼出的人体气息中的化学物质检测为我们提供了一个机会,使我们可以确定生理状态、诊断疾病或评估环境暴露情况。代谢组学研究的最新进展提高了我们在呼吸中探索人体代谢特征的能力。尽管在采样和分析方面存在一些明显的挑战,但呼出的气息仍然是代谢组学应用的理想介质,主要是因为它具有非侵入性、方便且几乎无限的可用性。目前已经建立了几种针对内源性或外源性气相化合物的基于呼气的测试方法,并正在实际和/或临床中使用。这篇综述概述了这些独特测试中呼气分析的概念及其应用。讨论了每种测试中针对的相应呼气生物标志物与其在人体内的生理产生以及相关测试的开发和实施之间的关系。本文最后简要介绍了有前景的测试,并展望了呼吸研究的未来方向。