Departamento de Química Física y Analítica, Facultad de Química, Universidad de Oviedo, 33006, Oviedo, Spain.
Departamento de Química Física y Analítica, Facultad de Química, Universidad de Oviedo, 33006, Oviedo, Spain.
Biosens Bioelectron. 2019 Jun 15;135:64-70. doi: 10.1016/j.bios.2019.04.006. Epub 2019 Apr 5.
In this work, we present a multiplexed (eight simultaneous measurements) paper-based electrochemical device developed in a very simple way and using low-cost materials, such as paper, carbon ink and multifunctional connector headers. Meanwhile, we have also combined the paper-based electrochemical platform with a glass-fiber strip in order to integrate easily a sampling step. Both approaches, simultaneous measuring and sampling, have been applied to the determination of glucose using bienzymatic biosensors. They are fabricated by adsorbing the mixture of enzymes (glucose oxidase and horseradish peroxidase), as well as the ferrocyanide, mediator of the electron transfer, on the paper-based electrode. After drying, the measuring solution (containing either glucose standards or samples) is added and the eight corresponding chronoamperograms are recorded. In the case of the microfluidic approach for sampling purposes, the glass-fiber pad (sampler) is immersed in a container with the solution, which flows by capillarity until it reaches the working electrode. The integration of one more step of the analytical process advances towards real and useful lab-on-a-chip devices. With these designs, a linear range comprised between 0.5 and 15 mM was achieved for glucose determination, with an excellent precision. If the sampler is employed, it is not necessary to use micropipettes and, nevertheless, precise measurements are obtained. The RSD of the slopes obtained for different calibrations performed in different days, with different arrays of electrochemical cells and different solutions is ca. 1%. Accurate results are obtained in the determination of glucose in real samples (orange fruit and cola beverages).
在这项工作中,我们展示了一种基于纸的电化学装置,它采用非常简单的方法和低成本材料(如纸、碳墨和多功能连接器头)进行了多路复用(同时进行八项测量)。同时,我们还将纸基电化学平台与玻璃纤维条结合在一起,以便轻松集成采样步骤。这两种方法,即同时测量和采样,都应用于使用双酶生物传感器测定葡萄糖。它们是通过将酶(葡萄糖氧化酶和辣根过氧化物酶)混合物以及电子转移的介体亚铁氰化物吸附在基于纸的电极上来制备的。干燥后,加入测量溶液(含有葡萄糖标准品或样品),并记录相应的八项计时电流图。在用于采样的微流控方法的情况下,玻璃纤维垫(采样器)浸入装有溶液的容器中,溶液通过毛细作用流动,直到到达工作电极。分析过程的集成推进了真正有用的片上实验室设备。通过这些设计,葡萄糖的测定线性范围在 0.5 到 15mM 之间,具有出色的精度。如果使用采样器,则不需要使用微量移液器,尽管如此,仍可以获得精确的测量结果。在不同天、不同电化学电池阵列和不同溶液进行的不同校准中,获得的斜率的 RSD 约为 1%。在真实样品(橙子和可乐饮料)中葡萄糖的测定中获得了准确的结果。