Laboratório de Sensores Eletroquímicos (LabSensE), Departamento de Química, Universidade Federal do Paraná (UFPR), CEP 81.531-980, Curitiba, PR, Brazil.
Laboratório de Sensores Eletroquímicos (LabSensE), Departamento de Química, Universidade Federal do Paraná (UFPR), CEP 81.531-980, Curitiba, PR, Brazil.
Biosens Bioelectron. 2017 Dec 15;98:161-167. doi: 10.1016/j.bios.2017.06.035. Epub 2017 Jun 22.
The tear glucose analysis is an important alternative for the indirect, simple and less invasive monitoring of blood glucose levels. However, the high cost and complex manufacturing process of tear glucose analyzers combined with the need to exchange the sensor after each analysis in the disposable tests prevent widespread application of the tear in glucose monitoring. Here, we present the integration of a biosensor made by the electropolymerization of poly(toluidine blue O) (PTB) and glucose oxidase (GOx) with an electroanalytical microfluidic device of easy assembly based on cotton threads, low cost materials and measurements by microflow injection analysis (µFIA) through passive pumping for performing tear glucose analyses in a simple, rapid and inexpensive way. A high stability between the analyses (RSD = 2.54%) and among the different systems (RSD = 3.13%) was obtained for the determination of glucose, in addition to a wide linear range between 0.075 and 7.5mmolL and a limit of detection of 22.2µmolL. The proposed method was efficiently employed in the determination of tear glucose in non-diabetic volunteers, obtaining a close correlation with their blood glucose levels, simplifying and reducing the costs of the analyses, making the tear glucose monitoring more accessible for the population.
泪液葡萄糖分析是一种替代方法,可间接、简便、无创地监测血糖水平。然而,泪液葡萄糖分析仪的高成本和复杂制造工艺,以及一次性测试中每次分析后都需要更换传感器,这些因素限制了其在葡萄糖监测中的广泛应用。在这里,我们介绍了一种生物传感器的集成,该传感器由聚(甲苯胺蓝 O)(PTB)和葡萄糖氧化酶(GOx)的电化学聚合制成,并与一种基于棉线的易于组装的电化学生物分析微流控装置集成,该装置成本低,通过微流动注射分析(µFIA)进行测量,通过被动泵送来实现简单、快速和经济的泪液葡萄糖分析。该方法在葡萄糖的测定中具有较高的分析稳定性(RSD=2.54%)和不同系统之间的稳定性(RSD=3.13%),此外,线性范围较宽,在 0.075 至 7.5mmolL 之间,检测限为 22.2µmolL。该方法在非糖尿病志愿者的泪液葡萄糖测定中得到了有效应用,与他们的血糖水平具有密切相关性,简化和降低了分析成本,使更多人能够进行泪液葡萄糖监测。