Anhui Province Key Laboratory of Medical Physics and Technology, Center of Medical Physics and Technology, Hefei Institutes of Physical Science, Chinese Academy of Sciences , Hefei, Anhui 230031, China.
Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences , Hefei, Anhui 230031, China.
Anal Chem. 2018 Feb 6;90(3):2210-2215. doi: 10.1021/acs.analchem.7b04563. Epub 2018 Jan 16.
Detection of volatile organic compounds (VOCs) in human urine has potential application value in screening for disease and toxin exposure. However, the current technologies are too slow to detect the concentration of VOCs in fresh urine. In this study, we developed a novel ultrasonic nebulization extraction proton transfer reaction mass spectrometry (UNE-PTR-MS) technology. The urinary VOCs can be rapidly extracted to gaseous VOCs using the UNE system and then delivered using a carrier gas to the PTR-MS instrument for rapid detection. The carrier gas flow and sample size were optimized to 100 mL/min and 100 μL, respectively. The limits of detection (LODs) and response time of the UNE-PTR-MS were evaluated by detecting three VOCs that are common in human urine: methanol, acetaldehyde, and acetone. The LODs determined for methanol (4.47 μg/L), acetaldehyde (1.98 μg/L), and acetone (3.47 μg/L) are 2-3 orders of magnitude lower than the mean concentrations of that in healthy human urine. The response time of the UNE-PTR-MS is 34 s and only 0.66 mL of urine is required for a full scan. The repeatability of this UNE-PTR-MS was evaluated, and the relative standard deviations of 5 independent determinations were between 4.62% and 5.21%. Lastly, the UNE-PTR-MS was applied for detection of methanol, acetaldehyde, and acetone in real human urine to test matrix effects, yielding relative recoveries of between 88.39% and 94.54%. These results indicate the UNE-PTR-MS can be used for the rapid detection of VOCs in a drop of urine and has practical potential for diagnosing disease or toxin exposure.
在筛选疾病和毒素暴露方面,检测人体尿液中的挥发性有机化合物(VOCs)具有潜在的应用价值。然而,目前的技术在检测新鲜尿液中 VOCs 的浓度方面速度太慢。在这项研究中,我们开发了一种新型的超声雾化提取质子转移反应质谱(UNE-PTR-MS)技术。利用 UNE 系统,尿液中的 VOCs 可以快速提取为气态 VOCs,然后用载气输送到 PTR-MS 仪器进行快速检测。优化了载气流速和样品量,分别为 100mL/min 和 100μL。通过检测三种常见于人体尿液中的 VOCs(甲醇、乙醛和丙酮),评估了 UNE-PTR-MS 的检测限(LOD)和响应时间。甲醇(4.47μg/L)、乙醛(1.98μg/L)和丙酮(3.47μg/L)的 LOD 分别比健康人尿液中的平均浓度低 2-3 个数量级。UNE-PTR-MS 的响应时间为 34s,仅需 0.66mL 尿液即可完成全扫描。评估了 UNE-PTR-MS 的重复性,5 次独立测定的相对标准偏差在 4.62%-5.21%之间。最后,应用 UNE-PTR-MS 检测真实人体尿液中的甲醇、乙醛和丙酮,以测试基质效应,得到的相对回收率在 88.39%-94.54%之间。这些结果表明,UNE-PTR-MS 可用于快速检测一滴尿液中的 VOCs,在诊断疾病或毒素暴露方面具有实际潜力。