Progress and challenges of developing volatile metabolites from exhaled breath as a biomarker platform

Author:

Chou HsuanORCID,Godbeer Lucy,Allsworth Max,Boyle Billy,Ball Madeleine L.ORCID

Abstract

Abstract Background The multitude of metabolites generated by physiological processes in the body can serve as valuable biomarkers for many clinical purposes. They can provide a window into relevant metabolic pathways for health and disease, as well as be candidate therapeutic targets. A subset of these metabolites generated in the human body are volatile, known as volatile organic compounds (VOCs), which can be detected in exhaled breath. These can diffuse from their point of origin throughout the body into the bloodstream and exchange into the air in the lungs. For this reason, breath VOC analysis has become a focus of biomedical research hoping to translate new useful biomarkers by taking advantage of the non-invasive nature of breath sampling, as well as the rapid rate of collection over short periods of time that can occur. Despite the promise of breath analysis as an additional platform for metabolomic analysis, no VOC breath biomarkers have successfully been implemented into a clinical setting as of the time of this review. Aim of review This review aims to summarize the progress made to address the major methodological challenges, including standardization, that have historically limited the translation of breath VOC biomarkers into the clinic. We highlight what steps can be taken to improve these issues within new and ongoing breath research to promote the successful development of the VOCs in breath as a robust source of candidate biomarkers. We also highlight key recent papers across select fields, critically reviewing the progress made in the past few years to advance breath research. Key scientific concepts of review VOCs are a set of metabolites that can be sampled in exhaled breath to act as advantageous biomarkers in a variety of clinical contexts.

Publisher

Springer Science and Business Media LLC

Reference205 articles.

1. Abd El Qader, A., Lieberman, D., Shemer Avni, Y., Svobodin, N., Lazarovitch, T., Sagi, O., & Zeiri, Y. (2015). Volatile organic compounds generated by cultures of bacteria and viruses associated with respiratory infections. Biomedical Chromatography: BMC, 29(12), 1783–1790. https://doi.org/10.1002/bmc.3494

2. Acevedo-Moreno, L., Sasaki, K., Firl, D., McVey, J., Berber, E., Miller, C., Lopez, R., Grove, D., Dweik, R., & Aucejo, F. (2018). Investigating the breath metabolome as a diagnostic tool for hepatocellular carcinoma in cirrhotic patients. HPB, 20, S82–S83. https://doi.org/10.1016/j.hpb.2018.02.326

3. Allardyce, R. A., Langford, V. S., Hill, A. L., & Murdoch, D. R. (2006). Detection of volatile metabolites produced by bacterial growth in blood culture media by selected ion flow tube mass spectrometry (SIFT-MS). Journal of Microbiological Methods, 65(2), 361–365. https://doi.org/10.1016/j.mimet.2005.09.003

4. Altomare, D. F., Picciariello, A., Rotelli, M. T., De Fazio, M., Aresta, A., Zambonin, C. G., Vincenti, L., Trerotoli, P., & De Vietro, N. (2020). Chemical signature of colorectal cancer: Case–control study for profiling the breath print. BJS Open, 4(6), 1189–1199. https://doi.org/10.1002/bjs5.50354

5. Amann, A., de Costello, B. L., Miekisch, W., Schubert, J., Buszewski, B., Pleil, J., Ratcliffe, N., & Risby, T. (2014). The human volatilome: Volatile organic compounds (VOCs) in exhaled breath, skin emanations, urine, feces and saliva. Journal of Breath Research, 8(3), 034001. https://doi.org/10.1088/1752-7155/8/3/034001

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