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通过对纸质微混合器进行简单的几何结构改进,亚硝酸盐可增强对唾液的检测。

Nitrite enhanced detection from saliva by simple geometrical modifications of paper-based micromixers.

作者信息

Mollaie Elham, Asiaei Sasan, Aryan Hiwa

机构信息

School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran.

Sensors and Integrated Bio-Microfluidics/MEMS Laboratory, School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran.

出版信息

Microfluid Nanofluidics. 2022;26(11):88. doi: 10.1007/s10404-022-02596-2. Epub 2022 Oct 12.

Abstract

Dysregulation of nitric oxide (NO) and it's two relatively stable metabolites, nitrite, and nitrate, in SARS-CoV-2, are reported in infected populations, especially for nitrates levels > 68.4 μmol/L. In this paper, we measure the abnormal presence of nitrite in the saliva by developing a cheap μPAD for colorimetric detection through the modified Griess reaction. This includes a diazotization reaction between nitrite and Griess reagent, including Sulfanilamide and N-Naphthyl-ethylenediamine in an acidic medium, causing a pink Azo compound. The modifications are suggested by a numerical method model that couples the mass flux with the porosity medium equations (convection, diffusion and, dispersion) that improves the mixing process. The mixing index was quantified from the concentration deviation method via simulation of a homogeneous two-phase flow in a porous environment. Five μPAD designs were fabricated to verify the simulation results of mixing enhancement on the Griess reactants in saliva samples. The investigated geometries include straight, helical, zig-zag, square wave, and inclined jagged shapes fabricated by direct laser writing, suitable for low cost, mass fabrication. Inclined jagged micromixer exhibited the best performance with up to 40% improvement compared with the simple straight geometry. Deliberate geometrical modifications, exemplified here in a jagged micromixer on paper, cut the limit of detection (LOD) by at least half without impacting the linear detection range.

摘要

在感染人群中,尤其是硝酸盐水平>68.4 μmol/L时,已报道新型冠状病毒(SARS-CoV-2)中一氧化氮(NO)及其两种相对稳定的代谢产物亚硝酸盐和硝酸盐的调节异常。在本文中,我们通过改进的格里斯反应开发了一种用于比色检测的廉价微流控纸基分析装置(μPAD),以测量唾液中亚硝酸盐的异常存在情况。这包括亚硝酸盐与格里斯试剂之间的重氮化反应,格里斯试剂在酸性介质中包括磺胺和N-萘基乙二胺,会产生粉红色偶氮化合物。这些改进是由一种数值方法模型提出的,该模型将质量通量与孔隙介质方程(对流、扩散和弥散)耦合,从而改善混合过程。通过在多孔环境中模拟均匀两相流,从浓度偏差方法对混合指数进行了量化。制作了五种μPAD设计,以验证唾液样本中格里斯反应物混合增强的模拟结果。所研究的几何形状包括通过直接激光写入制造的直线形、螺旋形、之字形、方波形和倾斜锯齿形,适用于低成本、大规模制造。与简单的直线几何形状相比,倾斜锯齿形微混合器表现出最佳性能,性能提高了40%。本文以纸基锯齿形微混合器为例进行的刻意几何形状改进,将检测限(LOD)至少降低了一半,同时不影响线性检测范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a205/9554860/8d0d1ac748f4/10404_2022_2596_Fig1_HTML.jpg

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