Laboratory for Instrumentation, Biomedical Engineering and Radiation Physics (LIBPhys-UNL), NOVA School of Science and Technology, NOVA University of Lisbon, Campus FCT-UNL, Caparica, Portugal.
Laboratory for Instrumentation, Biomedical Engineering and Radiation Physics (LIBPhys-UNL), NOVA School of Science and Technology, NOVA University of Lisbon, Campus FCT-UNL, Caparica, Portugal.
Biomed J. 2023 Aug;46(4):100623. doi: 10.1016/j.bj.2023.100623. Epub 2023 Jun 17.
Normal and abnormal/pathological status of physiological processes in the human organism can be characterized through Volatile Organic Compounds (VOCs) emitted in breath. Recently, a wide range of volatile analytes has risen as biomarkers. These compounds have been addressed in the scientific and medical communities as an extremely valuable metabolic window. Once collected and analysed, VOCs can represent a tool for a rapid, accurate, non-invasive, and painless diagnosis of several diseases and health conditions. These biomarkers are released by exhaled breath, urine, faeces, skin, and several other ways, at trace concentration levels, usually in the ppb (μg/L) range. For this reason, the analytical techniques applied for detecting and clinically exploiting the VOCs are extremely important. The present work reviews the most promising results in the field of breath biomarkers and the most common methods of detection of VOCs. A total of 16 pathologies and the respective database of compounds are addressed. An updated version of the VOCs biomarkers database can be consulted at: https://neomeditec.com/VOCdatabase/.
人体生理过程的正常和异常/病理状态可以通过呼气中释放的挥发性有机化合物 (VOC) 来表征。最近,作为生物标志物的挥发性分析物的范围很广。这些化合物被科学界和医学界视为极其有价值的代谢窗口。一旦收集和分析,VOC 就可以代表一种用于快速、准确、非侵入性和无痛诊断多种疾病和健康状况的工具。这些生物标志物通过呼气、尿液、粪便、皮肤和其他几种途径以痕量浓度(通常在 ppb(μg/L)范围内)释放。因此,用于检测和临床利用 VOC 的分析技术非常重要。目前的工作综述了呼气生物标志物领域最有前途的结果和最常见的 VOC 检测方法。共涉及 16 种疾病和相应的化合物数据库。VOC 生物标志物数据库的更新版本可在以下网址查阅:https://neomeditec.com/VOCdatabase/。