Agustini Deonir, Bergamini Márcio F, Marcolino-Junior Luiz Humberto
Laboratório de Sensores Eletroquímicos (LabSensE), Departamento de Química, Universidade Federal do Paraná (UFPR), CEP 81.531-980, Curitiba-PR, Brazil.
Lab Chip. 2016 Jan 21;16(2):345-52. doi: 10.1039/c5lc01348h.
Microfluidic devices are an interesting alternative for performing analytical assays, due to the speed of analyses, reduced sample, reagent and solvent consumption and less waste generation. However, the high manufacturing costs still prevent the massive use of these devices worldwide. Here, we present the construction of a low cost microfluidic thread-based electroanalytical device (μTED), employing extremely cheap materials and a manufacturing process free of equipment. The microfluidic channels were built with cotton threads and the estimated cost per device was only $0.39. The flow of solutions (1.12 μL s(-1)) is generated spontaneously due to the capillary forces, eliminating the use of any pumping system. To demonstrate the analytical performance of the μTED, a simultaneous determination of acetaminophen (ACT) and diclofenac (DCF) was performed by multiple pulse amperometry (MPA). A linear dynamic range (LDR) of 10 to 320 μmol L(-1) for both species, a limit of detection (LOD) and a limit of quantitation (LOQ) of 1.4 and 4.7 μmol L(-1) and 2.5 and 8.3 μmol L(-1) for ACT and DCF, respectively, as well as an analytical frequency of 45 injections per hour were reached. Thus, the proposed device has shown potential to extend the use of microfluidic analytical devices, due to its simplicity, low cost and good analytical performance.
微流控设备是进行分析检测的一种有趣的替代方案,这得益于其分析速度快、样品、试剂和溶剂消耗少以及产生的废物少。然而,高昂的制造成本仍然阻碍了这些设备在全球范围内的大规模使用。在此,我们展示了一种基于微流控线的低成本电分析设备(μTED)的构建,该设备采用极其廉价的材料且制造过程无需设备。微流控通道由棉线构建而成,每个设备的估计成本仅为0.39美元。由于毛细作用力,溶液(1.12 μL s(-1))的流动是自发产生的,无需使用任何泵送系统。为了证明μTED的分析性能,通过多脉冲安培法(MPA)同时测定了对乙酰氨基酚(ACT)和双氯芬酸(DCF)。两种物质的线性动态范围(LDR)均为10至320 μmol L(-1),ACT和DCF的检测限(LOD)分别为1.4和4.7 μmol L(-1),定量限(LOQ)分别为2.5和8.3 μmol L(-1),并且每小时的分析频率达到45次进样。因此,所提出的设备因其简单性、低成本和良好的分析性能,显示出扩展微流控分析设备使用的潜力。