Hassanzadeh Javad, Al Lawati Haider A J, Bagheri Nafiseh
Department of Chemistry, College of Science, Sultan Qaboos University, Box 36, Al-Khod, 123, Oman.
Department of Chemistry, College of Science, Sultan Qaboos University, Box 36, Al-Khod, 123, Oman.
Biosens Bioelectron. 2022 Jul 1;207:114184. doi: 10.1016/j.bios.2022.114184. Epub 2022 Mar 12.
This study reports an economical and portable point-of-care (POC) monitoring device based on artificial multi-enzyme cascade systems for multiple detection purposes. The device was made up of a disposable three dimensional microfluidic paper-based analytical device (3D μPAD) with multiple detection zones and a smartphone readout. On-paper synthesis of a multifunctional mimetic composite, based on the CeO nanoparticles embedded in the amino-functionalized Fe metal-organic frameworks (CeO@NH-MIL-88B(Fe)), for cascade reactions was the main achievement of this work. The 3D μPAD was applied for simultaneous quantification of glucose, fructose, sucrose and maltose, and the detection process consisted of the enzymatic reaction of each sugar by anchored enzymes on the metal-organic frameworks (MOF) and successive oxidation of 3,3',5,5'-tetramethylbenzidine (TMB). Utilizing the new artificial mimicking system improved the color development uniformity and resulted in a reliable detection tool, with excellent detection limits in the range of 20-280 μM. It was directly applied to analyze the sugars levels of human total blood, urine, semen, honey and juice samples with the relative errors of less than 7.7% compared with the HPLC method. The cost-effective and easy-to-use μPAD has a great potential to be used in either medical diagnostics or the food industry. Also, it can be considered as a competitive POC method for patients in disadvantaged communities or emergencies.
本研究报告了一种基于人工多酶级联系统的经济便携的即时检测(POC)监测设备,用于多种检测目的。该设备由具有多个检测区域的一次性三维微流控纸基分析设备(3D μPAD)和智能手机读数器组成。基于嵌入氨基功能化铁金属有机框架(CeO@NH-MIL-88B(Fe))中的CeO纳米颗粒进行级联反应的多功能模拟复合材料的纸上合成是这项工作的主要成果。3D μPAD用于同时定量葡萄糖、果糖、蔗糖和麦芽糖,检测过程包括金属有机框架(MOF)上固定的酶对每种糖的酶促反应以及3,3',5,5'-四甲基联苯胺(TMB)的连续氧化。利用新的人工模拟系统提高了显色均匀性,得到了一种可靠的检测工具,检测限在20-280 μM范围内,效果极佳。它直接用于分析人体全血、尿液、精液、蜂蜜和果汁样品中的糖水平,与高效液相色谱法相比,相对误差小于7.7%。这种经济高效且易于使用的μPAD在医学诊断或食品工业中具有巨大的应用潜力。此外,它可被视为为弱势社区患者或紧急情况提供的一种有竞争力的即时检测方法。