Al-Jaf Sabah H, Omer Khalid M
Department of Chemistry, College of Science, University of Sulaimani 46002 Sulaimani City Kurdistan Region Iraq
Department of Chemistry, College of Science, University of Garmian Darbandikhan Road 46021 Kalar City Sulaimaniyah Province Iraq.
RSC Adv. 2023 May 23;13(23):15704-15713. doi: 10.1039/d3ra01601c. eCollection 2023 May 22.
Developing accurate, precise, instrument-free, and point-of-need microfluidic paper-based devices is highly significant in clinical diagnosis and biomedical analysis. In the present work, a ratiometric distance-based microfluidic paper-based analytical device (R-DB-μPAD), along with a three-dimensional (3D) multifunctional connector (spacer), was designed to improve the accuracy and detection resolution analyses. Specifically, the novel R-DB-μPAD was used for the accurate and precise detection of ascorbic acid (AA) as a model analyte. In this design, two channels were fabricated as detection zones, with a 3D spacer located between the sampling and detection zones to improve the detection resolution by preventing the reagents mixing from overspreading between these zones. Two probes for AA were used: Fe and 1,10-phenanthroline were deposited in the first channel, and oxidized 3,3',5,5'-tetramethylbenzidine (oxTMB) was added to the second channel. Accuracy improvement of this ratiometry-based design was achieved by enhancing the linearity range and reducing the volume dependency of the output signal. Moreover, the 3D connector improved the detection resolution by eliminating the systematic errors. Under the optimal conditions, the ratio of the distances of the color bands in the two channels was used to construct an analytical calibration curve in the range from 0.05 to 1.2 mM, with a limit of detection of 16 μM. The proposed R-DB-μPAD combined with the connector was successfully used for the detection of AA in orange juice and vitamin C tablets with satisfactory accuracy and precision. This work opens the door for multiplex analysis of various analytes in different matrices.
开发准确、精密、无需仪器且即时可用的微流控纸基设备在临床诊断和生物医学分析中具有重要意义。在本研究中,设计了一种基于比率距离的微流控纸基分析设备(R-DB-μPAD)以及一种三维(3D)多功能连接器(间隔物),以提高分析的准确性和检测分辨率。具体而言,新型R-DB-μPAD用于准确、精密地检测作为模型分析物的抗坏血酸(AA)。在该设计中,制作了两个通道作为检测区,在采样区和检测区之间设置一个3D间隔物,通过防止试剂混合在这些区域之间过度扩散来提高检测分辨率。使用了两种用于检测AA的探针:将铁和1,10-菲啰啉沉积在第一个通道中,并将氧化的3,3',5,5'-四甲基联苯胺(oxTMB)添加到第二个通道中。通过扩大线性范围和降低输出信号的体积依赖性,实现了这种基于比率法设计的准确性提高。此外,3D连接器通过消除系统误差提高了检测分辨率。在最佳条件下,利用两个通道中色带距离的比值构建了0.05至1.2 mM范围内的分析校准曲线,检测限为16 μM。所提出的R-DB-μPAD与连接器相结合,成功用于橙汁和维生素C片中AA的检测,具有令人满意的准确度和精密度。这项工作为不同基质中各种分析物的多重分析打开了大门。