Dong Hao, Qian Libin, Cui Yaoxuan, Zheng Xubin, Cheng Chen, Cao Qingpeng, Xu Feng, Wang Jin, Chen Xing, Wang Di
Intelligent Perception Research Institute, Zhejiang Lab, Hangzhou, China.
Key Laboratory for Biomedical Engineering of Education Ministry of China, Zhejiang University, Hangzhou, China.
Front Bioeng Biotechnol. 2022 Mar 8;10:861950. doi: 10.3389/fbioe.2022.861950. eCollection 2022.
Breath acetone (BrAce) level is an indicator of lipid oxidation rate, which is crucial for evaluating the status of ketoacidosis, ketogenic diet, and fat burning during exercise. Despite its usefulness, detecting BrAce accurately is challenging because exhaled breath contains an enormous variety of compounds. Although many sensors and devices have been developed for BrAce measurement, most of them were tested with only synthetic or spiked breath samples, and few can detect low concentration BrAce in an online manner, which is critical for extending application areas and the wide acceptance of the technology. Here, we show that online detection of BrAce can be achieved using a metal oxide semiconductor acetone sensor. The high accuracy measurement of low concentration BrAce was enabled by separating major interference gases utilizing their large diffusion coefficients, and the accuracy is further improved by the correction of humidity effect. We anticipate that the approach can push BrAce measurement closer to being useful for various applications.
呼吸丙酮(BrAce)水平是脂质氧化速率的一个指标,这对于评估酮症酸中毒、生酮饮食和运动期间脂肪燃烧的状态至关重要。尽管它很有用,但准确检测BrAce具有挑战性,因为呼出的气体包含各种各样的化合物。虽然已经开发了许多用于测量BrAce的传感器和设备,但大多数仅使用合成或加标呼吸样本进行测试,很少有能够在线检测低浓度BrAce的,而这对于扩展应用领域和该技术的广泛接受至关重要。在此,我们展示了使用金属氧化物半导体丙酮传感器可以实现BrAce的在线检测。通过利用主要干扰气体的大扩散系数将其分离,实现了低浓度BrAce的高精度测量,并且通过校正湿度效应进一步提高了精度。我们预计该方法可以使BrAce测量更接近对各种应用有用的程度。