Bikov A, Lazar Zs, Schandl K, Antus B M, Losonczy G, Horvath Ildiko
Department of Pulmonology, Semmelweis University, Budapest, Hungary.
Acta Physiol Hung. 2011 Sep;98(3):321-8. doi: 10.1556/APhysiol.98.2011.3.9.
Exercise-caused metabolic changes can be followed by monitoring exhaled volatiles; however it has not been previously reported if a spectrum of exhaled gases is modified after physical challenge. We have hypothesized that changes in volatile molecules assessed by an electronic nose may be the reason for the alkalization of the exhaled breath condensate (EBC) fluid following physical exercise.Ten healthy young subjects performed a 6-minute running test. Exhaled breath samples pre-exercise and post-exercise (0 min, 15 min, 30 min and 60 min) were collected for volatile pattern ("smellprint") determination and pH measurements (at 5.33 kPa CO2), respectively. Exhaled breath smellprints were analyzed using principal component analysis and were related to EBC pH.Smellprints (p=0.04) and EBC pH (p=0.01) were altered during exercise challenge. Compared to pre-exercise values, smellprints and pH differed at 15 min, 30 min and 60 min following exercise (p<0.05), while no difference was found at 0 min post-exercise. In addition, a significant correlation was found between volatile pattern of exhaled breath and EBC pH (p=0.01, r=-0.34).Physical exercise changes the pattern of exhaled volatiles together with an increase in pH of breath. Changes in volatiles may be responsible for increase in EBC pH.
运动引起的代谢变化可通过监测呼出的挥发性物质来跟踪;然而,此前尚未有报道称在身体受到挑战后呼出气体的光谱是否会发生改变。我们推测,通过电子鼻评估的挥发性分子变化可能是体育锻炼后呼出气体冷凝液(EBC)碱化的原因。10名健康的年轻受试者进行了6分钟的跑步测试。分别收集运动前和运动后(0分钟、15分钟、30分钟和60分钟)的呼出气体样本,用于测定挥发性模式(“气味指纹”)和pH值测量(在5.33 kPa二氧化碳条件下)。使用主成分分析对呼出气体的气味指纹进行分析,并将其与EBC的pH值相关联。在运动挑战期间,气味指纹(p = 0.04)和EBC的pH值(p = 0.01)发生了变化。与运动前的值相比,运动后15分钟、30分钟和60分钟时的气味指纹和pH值存在差异(p < 0.05),而运动后0分钟时未发现差异。此外,呼出气体的挥发性模式与EBC的pH值之间存在显著相关性(p = 0.01,r = -0.34)。体育锻炼会改变呼出挥发性物质的模式,同时呼气的pH值会升高。挥发性物质的变化可能是EBC pH值升高的原因。