ECsens, Department of Analytical Chemistry, University of Granada, 18071, Granada, Spain.
Department of Inorganic Chemistry, Campus Fuentenueva, Faculty of Sciences, University of Granada, 18071, Granada, Spain.
Mikrochim Acta. 2017 Dec 13;185(1):47. doi: 10.1007/s00604-017-2575-7.
This work presents a microfluidic paper-based analytical device (μPAD) for glucose determination using a supported metal-organic framework (MOF) acting as a peroxidase mimic. The catalytic action of glucose oxidase (GOx) on glucose causes the formation of HO, and the MOF causes the oxidation of 3,3',5,5'-tetramethylbenzidine (TMB) by HO to form a blue-green product with an absorption peak at 650 nm in the detection zone. A digital camera and the iOS feature of a smartphone are used for the quantitation of glucose with the S coordinate of the HSV color space as the analytical parameter. Different factors such as the concentration of TMB, GOx and MOF, pH and buffer, sample volume, reaction time and reagent position in the μPAD were optimized. Under optimal conditions, the value for the S coordinate increases linearly up to 150 μmol·L glucose concentrations, with a 2.5 μmol·L detection limit. The μPAD remains stable for 21 days under conventional storage conditions. Such an enzyme mimetic-based assay to glucose determination using Fe-MIL-101 MOF implemented in a microfluidic paper-based device possesses advantages over enzyme-based assays in terms of costs, durability and stability compared to other existing glucose determination methods. The procedure was applied to the determination of glucose in (spiked) serum and urine. Graphical abstract Schematic representation of microfluidic paper-based analytical device using metal-organic framework as a peroxidase mimic for colorimetric glucose detection with digital camera or smartphone and iOS app readout.
本工作提出了一种使用金属有机骨架(MOF)作为过氧化物酶模拟物的微流控纸基分析器件(μPAD)用于葡萄糖测定。葡萄糖氧化酶(GOx)对葡萄糖的催化作用导致 HO 的形成,而 MOF 导致 HO 氧化 3,3',5,5'-四甲基联苯胺(TMB)形成在检测区具有 650nm 吸收峰的蓝绿色产物。数字相机和智能手机的 iOS 功能用于通过 HSV 颜色空间的 S 坐标作为分析参数对葡萄糖进行定量。优化了 TMB、GOx 和 MOF 的浓度、pH 和缓冲液、样品体积、反应时间和 μPAD 中的试剂位置等不同因素。在最佳条件下,S 坐标值在线性范围内增加到 150μmol·L 的葡萄糖浓度,检测限为 2.5μmol·L。在常规储存条件下,μPAD 可稳定 21 天。与其他现有的葡萄糖测定方法相比,基于酶模拟物的 Fe-MIL-101 MOF 测定葡萄糖的方法在成本、耐用性和稳定性方面优于基于酶的测定方法。该方法已应用于(加标)血清和尿液中葡萄糖的测定。