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通过在基于距离的微流控纸基分析器件的采样区和检测区之间设计多功能 3D 连接器来提高检测分辨率:用于多重分析的多通道设计。

Enhancing of detection resolution via designing of a multi-functional 3D connector between sampling and detection zones in distance-based microfluidic paper-based analytical device: multi-channel design for multiplex analysis.

机构信息

Department of Chemistry, College of Science, University of Sulaimani, Sulaimani City, 46002, Kurdistan Region, Iraq.

Department of Chemistry, College of Science, University of Garmian, Darbandikhan Road, Kalar City, Sulaimaniyah Province, 46021, Kurdistan Region, Iraq.

出版信息

Mikrochim Acta. 2022 Nov 30;189(12):482. doi: 10.1007/s00604-022-05585-y.

DOI:10.1007/s00604-022-05585-y
PMID:36447014
Abstract

One of the problems in the distance-based microfluidic paper-based analytical device (DB-µPAD) that limits the detection resolution is the mixing of reagents from the detection to the sampling zone or vice versa due to spreading by capillary action. In the present paper, to overcome mixing of the reagents in the zones, a multi-functional connector using a three-dimensional (3D) design has been developed externally to connect the two zones. Using such a novel design, it is acertained that there is no any mixing due to the dispersion of the reagents in the two zones. Interestingly, the simple 3D connector has other functions, such as its potential to be used as a masking zone and/or reaction zone whenever is needed. Based on this proposed 3D connector-based DB-µPAD, three parallel microchannels were built as detection zones with one sampling zone for multiplex analysis for the detection of Fe, Ni, and hardness of water. In the Ni channel, the connector piece worked as both masking part and connection part. In the Fe line, the connector served as the connector and reducing pad (Fe to Fe ions). While in the third channel, the connector has connection function only. Satisfactory limit of detection (LoD), accuracy, and precision were obtained using this design. The LODs obtained with the proposed design were 1.13, 0.62, and 1.87 mg.L for total hardness, Fe, and Ni, respectively.

摘要

基于距离的微流控纸基分析器件(DB-µPAD)的一个问题是,由于毛细作用的扩散,检测区和采样区之间的试剂混合限制了检测分辨率。在本文中,为了克服区之间试剂的混合,开发了一种外部使用三维(3D)设计的多功能连接器,用于连接两个区。使用这种新颖的设计,可以确定由于试剂在两个区中的分散,不会发生任何混合。有趣的是,这种简单的 3D 连接器具有其他功能,例如,当其需要时,它可以用作掩蔽区和/或反应区。基于这种基于 3D 连接器的 DB-µPAD,构建了三个平行的微通道作为检测区,一个采样区用于 Fe、Ni 和水硬度的多重分析。在 Ni 通道中,连接器片既作为掩蔽部分又作为连接部分。在 Fe 线中,连接器用作连接器和还原垫(Fe 到 Fe 离子)。而在第三个通道中,连接器仅具有连接功能。使用该设计获得了令人满意的检测限(LoD)、准确性和精密度。使用该设计获得的 LoD 分别为总硬度、Fe 和 Ni 的 1.13、0.62 和 1.87 mg.L。

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引用本文的文献

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Accuracy improvement novel ratiometry design in distance-based microfluidic paper based analytical device: instrument-free point of care testing.基于距离的微流控纸基分析装置中的新型比率测量设计提高准确性:无需仪器的即时检测
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