Abstract
AbstractThe analysis of volatile organic compounds (VOCs) as a non-invasive method for disease monitoring, such as type 2 diabetes (T2D) has shown potential over the years although not yet set in clinical practice. Longitudinal studies to date are limited and the understanding of the underlying VOC emission over the age is poorly understood. This study investigated longitudinal changes in VOCs present in faecal headspace in two mouse models of T2D – Cushing’s syndrome and single Afmid knockout mice. Longitudinal changes in bodyweight, blood glucose levels and plasma insulin concentration were also reported. Faecal headspace analysis was carried out using selected ion flow tube mass spectrometry (SIFT-MS) and thermal desorption coupled to gas chromatography-mass spectrometry (TD-GC-MS). Multivariate data analysis of the VOC profile showed differences mainly in acetic acid and butyric acid able to discriminate the groups Afmid and Cushing’s mice. Moreover, multivariate data analysis revealed statistically significant differences in VOCs between Cushing’s mice/wild-type (WT) littermates, mainly short-chain fatty acids (SCFAs), ketones, and alcohols, and longitudinal differences mainly attributed to methanol, ethanol and acetone. Afmid mice did not present statistically significant differences in their volatile faecal metabolome when compared to their respective WT littermates. The findings suggested that mice developed a diabetic phenotype and that the altered VOC profile may imply a related change in gut microbiota, particularly in Cushing’s mice. Furthermore, this study provided major evidence of age-related changes on the volatile profile of diabetic mice.
Publisher
Springer Science and Business Media LLC
Reference65 articles.
1. Likhodii, S., Musa, K. & Cunnane, S. Breath acetone as a measure of systemic ketosis assessed in a rat model of the ketogenic diet. Clin. Chem. 48, 115–120 (2002).
2. Vautz, W., Nolte, J., Bufe, A., Baumbach, J. I. & Peters, M. Analyses of mouse breath with ion mobility spectrometry: a feasibility study. J. Appl. Physiol. 108, 697–704 (2010).
3. Szymczak, W. et al. Online breath gas analysis in unrestrained mice by hs-PTR-MS. Mamm. Genome 25, 129–140 (2014).
4. Kistler, M. et al. Diet-induced and mono-genetic obesity alter volatile organic compound signature in mice. J. Breath Res. 10, 1–15 (2016).
5. Kistler, M. et al. Effects of diet-matrix on volatile organic compounds in breath in diet-induced obese mice. J. Breath Res. 8, 1–9 (2014).
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