Baranska Agnieszka, Tigchelaar Ettje, Smolinska Agnieszka, Dallinga Jan W, Moonen Edwin J C, Dekens Jackie A M, Wijmenga Cisca, Zhernakova Alexandra, van Schooten Frederik J
Top Institute Food and Nutrition, Wageningen, the Netherlands.
J Breath Res. 2013 Sep;7(3):037104. doi: 10.1088/1752-7155/7/3/037104. Epub 2013 Jun 18.
In the present longitudinal study, we followed volatile organic compounds (VOCs) excreted in exhaled breath of 20 healthy individuals over time, while adhering to a gluten-free diet for 4 weeks prior to adherence to a normal diet. We used gas chromatography coupled with mass spectrometry (TD-GC-tof-MS) in combination with chemometric analysis to detect an array of VOCs in exhaled breath. Multivariate analysis was applied to extract the maximal information from the obtained data. Dietary intake was assessed to verify adherence to the diet and to get insight into macronutrient intake during the intervention period. A set of 12 volatile compounds distinguished the samples obtained during the gluten-free diet from those obtained during a normal diet. Seven compounds could be chemically identified (2-butanol, octane, 2-propyl-1pentanol, nonanal, dihydro-4-methyl-2(3H)-furanone, nonanoic acid and dodecanal) and speculated on a possible origin. Our findings suggest that a gluten-free dietary period had a reversible impact on participants' excreted metabolites visible in their breath. Several explanations are proposed of influencing metabolic status through dietary interventions. Although the exact origin of the discriminating compounds is not yet known, the main goal of this paper was to share a new potential use of exhaled air analysis and might become a useful tool in fields of nutrition and metabolism.
在本纵向研究中,我们对20名健康个体呼气中排出的挥发性有机化合物(VOCs)进行了长期跟踪,同时在恢复正常饮食前遵循无麸质饮食4周。我们使用气相色谱-质谱联用(TD-GC-tof-MS)结合化学计量分析来检测呼气中的一系列VOCs。应用多变量分析从获得的数据中提取最大信息。评估饮食摄入量以验证对饮食的依从性,并深入了解干预期内的常量营养素摄入量。一组12种挥发性化合物区分了无麸质饮食期间和正常饮食期间获得的样本。七种化合物可以通过化学方法鉴定(2-丁醇、辛烷、2-丙基-1-戊醇、壬醛、二氢-4-甲基-2(3H)-呋喃酮、壬酸和十二醛),并推测了其可能的来源。我们的研究结果表明,无麸质饮食期对参与者呼气中可见的排泄代谢产物有可逆影响。提出了几种通过饮食干预影响代谢状态的解释。尽管鉴别化合物的确切来源尚不清楚,但本文的主要目的是分享呼气分析的一种新的潜在用途,并且可能成为营养和代谢领域的有用工具。