Chemical Engineering Program, University of Cincinnati, Cincinnati, OH 45221, USA.
Talanta. 2013 Aug 15;112:26-30. doi: 10.1016/j.talanta.2013.03.052. Epub 2013 Mar 31.
Measurement of acetone in human breath samples has been previously shown to provide significant non-invasive diagnostic insight into the control of a patient's diabetic condition. In patients with diabetes mellitus, the body produces excess amounts of ketones such as acetone, which are then exhaled during respiration. Using various breath analysis methods has allowed for the accurate determination of acetone concentrations in exhaled breath. However, many of these methods require instrumentation and pre-concentration steps not suitable for point-of-care use. We have found that by immobilizing resorcinol reagent into a perfluorosulfonic acid polymer membrane, a controlled organic synthesis reaction occurs with acetone in a dry carrier gas. The immobilized, highly selective product of this reaction (a flavan) is found to produce a visible spectrum color change which could measure acetone concentrations to less than ppm. We here demonstrate how this approach can be used to produce a portable optical sensing device for real-time, non-invasive acetone analysis.
先前的研究表明,测量人体呼吸样本中的丙酮含量可提供重要的非侵入性诊断信息,有助于控制患者的糖尿病病情。在糖尿病患者中,身体会产生过多的酮体,如丙酮,这些酮体在呼吸时会被呼出。使用各种呼吸分析方法可以准确测定呼出呼吸中的丙酮浓度。然而,许多这些方法需要仪器和预浓缩步骤,不适合即时使用。我们发现,通过将间苯二酚试剂固定在全氟磺酸聚合物膜中,在干燥的载气中,可与丙酮发生可控的有机合成反应。这种反应的固定化、高选择性产物(黄烷)会产生可见光谱颜色变化,可将丙酮浓度测量至 ppm 以下。我们在此展示了如何使用这种方法来制作一种便携式光学传感设备,用于实时、非侵入性的丙酮分析。