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一种便携式实时衰荡呼吸丙酮分析仪:迈向潜在的糖尿病筛查与管理

A Portable Real-Time Ringdown Breath Acetone Analyzer: Toward Potential Diabetic Screening and Management.

作者信息

Jiang Chenyu, Sun Meixiu, Wang Zhennan, Chen Zhuying, Zhao Xiaomeng, Yuan Yuan, Li Yingxin, Wang Chuji

机构信息

Institute of Biomedical Engineering, Chinese Academy of Medical Sciences & Peking Union Medical College, Tianjin 300192, China.

Department of Physics and Astronomy, Mississippi State University, Starkville, MS 39759, USA.

出版信息

Sensors (Basel). 2016 Jul 30;16(8):1199. doi: 10.3390/s16081199.

Abstract

Breath analysis has been considered a suitable tool to evaluate diseases of the respiratory system and those that involve metabolic changes, such as diabetes. Breath acetone has long been known as a biomarker for diabetes. However, the results from published data by far have been inconclusive regarding whether breath acetone is a reliable index of diabetic screening. Large variations exist among the results of different studies because there has been no "best-practice method" for breath-acetone measurements as a result of technical problems of sampling and analysis. In this mini-review, we update the current status of our development of a laser-based breath acetone analyzer toward real-time, one-line diabetic screening and a point-of-care instrument for diabetic management. An integrated standalone breath acetone analyzer based on the cavity ringdown spectroscopy technique has been developed. The instrument was validated by using the certificated gas chromatography-mass spectrometry. The linear fittings suggest that the obtained acetone concentrations via both methods are consistent. Breath samples from each individual subject under various conditions in total, 1257 breath samples were taken from 22 Type 1 diabetic (T1D) patients, 312 Type 2 diabetic (T2D) patients, which is one of the largest numbers of T2D subjects ever used in a single study, and 52 non-diabetic healthy subjects. Simultaneous blood glucose (BG) levels were also tested using a standard diabetic management BG meter. The mean breath acetone concentrations were determined to be 4.9 ± 16 ppm (22 T1D), and 1.5 ± 1.3 ppm (312 T2D), which are about 4.5 and 1.4 times of the one in the 42 non-diabetic healthy subjects, 1.1 ± 0.5 ppm, respectively. A preliminary quantitative correlation (R = 0.56, p < 0.05) between the mean individual breath acetone concentration and the mean individual BG levels does exist in 20 T1D subjects with no ketoacidosis. No direct correlation is observed in T1D subjects, T2D subjects, and healthy subjects. The results from a relatively large number of subjects tested indicate that an elevated mean breath acetone concentration exists in diabetic patients in general. Although many physiological parameters affect breath acetone, under a specifically controlled condition fast (<1 min) and portable breath acetone measurement can be used for screening abnormal metabolic status including diabetes, for point-of-care monitoring status of ketone bodies which have the signature smell of breath acetone, and for breath acetone related clinical studies requiring a large number of tests.

摘要

呼吸分析被认为是评估呼吸系统疾病以及那些涉及代谢变化的疾病(如糖尿病)的合适工具。呼吸丙酮长期以来一直被认为是糖尿病的生物标志物。然而,就呼吸丙酮是否是糖尿病筛查的可靠指标而言,迄今为止已发表的数据结果尚无定论。由于采样和分析的技术问题,不同研究的结果存在很大差异,因为目前还没有用于测量呼吸丙酮的“最佳实践方法”。在本综述中,我们更新了基于激光的呼吸丙酮分析仪在实时一线糖尿病筛查和糖尿病管理即时检测仪器方面的发展现状。已开发出一种基于光腔衰荡光谱技术的集成式独立呼吸丙酮分析仪。该仪器通过使用经认证的气相色谱 - 质谱联用仪进行了验证。线性拟合表明,通过两种方法获得的丙酮浓度是一致的。在各种条件下采集了每个个体受试者的呼吸样本,总共从22名1型糖尿病(T1D)患者、312名2型糖尿病(T2D)患者(这是单个研究中使用的2型糖尿病受试者数量最多的之一)和52名非糖尿病健康受试者中采集了1257份呼吸样本。同时,使用标准糖尿病管理血糖仪检测了血糖(BG)水平。测定1型糖尿病患者的平均呼吸丙酮浓度为4.9±16 ppm(22例),2型糖尿病患者为1.5±1.3 ppm(312例),分别约为42名非糖尿病健康受试者(1.1±0.5 ppm)的4.5倍和1.4倍。在20名无酮症酸中毒的1型糖尿病受试者中,个体平均呼吸丙酮浓度与个体平均血糖水平之间确实存在初步的定量相关性(R = 0.56,p < 0.05)。在1型糖尿病受试者、2型糖尿病受试者和健康受试者中未观察到直接相关性。对相对大量受试者的测试结果表明,糖尿病患者的平均呼吸丙酮浓度总体上有所升高。尽管许多生理参数会影响呼吸丙酮,但在特定控制条件下(快速(<1分钟)且便携的呼吸丙酮测量可用于筛查包括糖尿病在内的异常代谢状态、即时监测具有呼吸丙酮特征气味的酮体状态以及用于需要大量测试的与呼吸丙酮相关的临床研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a08f/5017365/25391a84eb94/sensors-16-01199-g001.jpg

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