4.3 Article

Effects of long-term vegan diet on breath composition

期刊

JOURNAL OF BREATH RESEARCH
卷 16, 期 2, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/1752-7163/ac4d41

关键词

breath analysis; vegan diet; Mediterranean diet; isoprene; standardization

资金

  1. Division of Analytical Chemistry of the European Chemical Society

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The composition of exhaled breath is influenced by various factors and it is difficult to identify specific biomarkers or differentiate between healthy and pathological subjects. This study compared the breath composition of individuals following vegan and Mediterranean omnivorous diets, and found that differences in compound profiles can distinguish between different dietary groups.
The composition of exhaled breath derives from an intricate combination of normal and abnormal physiological processes that are modified by the consumption of food and beverages, circadian rhythms, bacterial infections, and genetics as well as exposure to xenobiotics. This complexity, which results wide intra- and inter-individual variability and is further influenced by sampling conditions, hinders the identification of specific biomarkers and makes it difficult to differentiate between pathological and nominally healthy subjects. The identification of a 'normal' breath composition and the relative influence of the aforementioned parameters would make breath analyses much faster for diagnostic applications. We thus compared, for the first time, the breath composition of age-matched volunteers following a vegan and a Mediterranean omnivorous diet in order to evaluate the impact of diet on breath composition. Mixed breath was collected from 38 nominally healthy volunteers who were asked to breathe into a 2 l handmade Nalophan bag. Exhalation flow rate and carbon dioxide values were monitored during breath sampling. An aliquot (100 ml) of breath was loaded into a sorbent tube (250 mg of Tenax GR, 60/80 mesh) before being analyzed by thermal desorption-gas chromatography-mass spectrometry (TD-GC-MS). Breath profiling using TD-GC-MS analysis identified five compounds (methanol, 1-propanol, pentane, hexane, and hexanal), thus enabling differentiation between samples collected from the different group members. Principal component analysis showed a clear separation between groups, suggesting that breath analysis could be used to study the influence of dietary habits in the fields of nutrition and metabolism. Surprisingly, one Italian woman and her brother showed extremely low breath isoprene levels (about 5 pbv), despite their normal lipidic profile and respiratory data, such as flow rate and pCO(2). Further investigations to reveal the reasons behind low isoprene levels in breath would help reveal the origin of isoprene in breath.

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