Tuberculosis and Lung Diseases Research Center and Faculty of Medicine, Tabriz University of Medical Sciences, Tabriz, Iran.
Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Crit Rev Anal Chem. 2022;52(7):1461-1487. doi: 10.1080/10408347.2021.1889961. Epub 2021 Mar 11.
Metabolomics research is rapidly gaining momentum in disease diagnosis, on top of other Omics technologies. Breathomics, as a branch of metabolomics is developing in various frontiers, for early and noninvasive monitoring of disease. This review starts with a brief introduction to metabolomics and breathomics. A number of important technical issues in exhaled breath collection and factors affecting the sampling procedures are presented. We review the recent progress in metabolomics approaches and a summary of their applications on the respiratory and non-respiratory diseases investigated by breath analysis. Recent reports on breathomics studies retrieved from Scopus and Pubmed were reviewed in this work. We conclude that analyzing breath metabolites (both volatile and nonvolatile) is valuable in disease diagnoses, and therefore believe that breathomics will turn into a promising noninvasive discipline in biomarker discovery and early disease detection in personalized medicine. The problem of wide variations in the reported metabolite concentrations from breathomics studies should be tackled by developing more accurate analytical methods and sophisticated numerical analytical alogorithms.
代谢组学研究在疾病诊断方面正迅速发展,与其他组学技术相比,呼出气组学作为代谢组学的一个分支,在各个前沿领域发展,用于早期和非侵入性的疾病监测。本综述首先简要介绍了代谢组学和呼出气组学。本文介绍了呼出气采集的一些重要技术问题以及影响采样程序的因素。我们综述了代谢组学方法的最新进展,并对通过呼吸分析研究的呼吸和非呼吸疾病的应用进行了总结。本文对 Scopus 和 Pubmed 上检索到的关于呼出气组学研究的最新报告进行了综述。我们得出的结论是,分析呼吸代谢物(挥发性和非挥发性)在疾病诊断中具有重要价值,因此相信呼出气组学将成为生物标志物发现和个性化医疗中早期疾病检测的一种很有前途的无创学科。通过开发更准确的分析方法和复杂的数值分析算法,可以解决呼出气组学研究中报告的代谢物浓度差异较大的问题。