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Is Exhaled Carbon Monoxide Level Associated With Blood Glucose Level? A Comparison Of Two Breath Analyzing Methods

机译:呼出的一氧化碳水平与血糖水平相关吗?两种呼吸分析方法的比较

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The level of exhaled carbon monoxide (eCO) is considered a marker of oxidative stress in diabetes. Previous findings indicated that eCO levels correlated with blood glucose level. The aim of this work was to apply and compare two independent analyzing methods for eCO after oral glucose administration. Glycemia, eCO, and exhaled hydrogen were measured before and after oral administration of glucose. Six healthy nonsmoking volunteers participated. For eCO analysis, we used two methods: a commercially available electrochemical sensor, and a high-precision laser spectrometer developed in our laboratory. The precision of laser-spectroscopic eCO measurements was two orders of magnitude better than the precision of the electrochemical eCO measurement. eCO levels measured by laser spectrometry after glucose administration showed a decrease of 4.1%±1.5% compared to the baseline (p < 0.05). Changes in the eCO measured by the electrochemical sensor were not significant (p=0.08). Exhaled hydrogen levels increased by 40% within the first 10 min after glucose administration (p < 0.05). The previous finding that the glycemia increase after glucose administration was associated with a significant increase in eCO concentrations was not confirmed. We propose that previous eCO measurements with electrochemical sensors may have been affected by cross sensitivity to hydrogen.
机译:呼出气一氧化碳(eCO)的水平被认为是糖尿病中氧化应激的标志。先前的发现表明eCO水平与血糖水平相关。这项工作的目的是应用和比较口服葡萄糖给药后两种独立的eCO分析方法。口服葡萄糖前后测量血糖,eCO和呼出氢。六名健康的非吸烟志愿者参加了比赛。对于eCO分析,我们使用了两种方法:市售的电化学传感器和实验室中开发的高精度激光光谱仪。激光光谱eCO测量的精度比电化学eCO测量的精度高两个数量级。给予葡萄糖后,通过激光光谱法测量的eCO水平与基线相比降低了4.1%±1.5%(p <0.05)。电化学传感器测得的eCO变化不明显(p = 0.08)。葡萄糖给药后的最初10分钟内,呼出的氢气水平增加了40%(p <0.05)。先前的发现没有证实葡萄糖给药后血糖升高与eCO浓度的显着增加有关。我们建议以前使用电化学传感器进行的eCO测量可能已受到对氢的交叉敏感性的影响。

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