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基于氧化锌纳米棒的微流控纸基分析器件对多种小分子生物标志物的同步灵敏检测

Simultaneous and sensitive detection of multiple small biological molecules by microfluidic paper-based analytical device integrated with zinc oxide nanorods.

机构信息

Research Center for Analytical Sciences, Department of Chemistry, College of Sciences, Northeastern University, Box 332, Shenyang, 110819, China.

Research Center for Analytical Sciences, Department of Chemistry, College of Sciences, Northeastern University, Box 332, Shenyang, 110819, China.

出版信息

Talanta. 2021 Sep 1;232:122499. doi: 10.1016/j.talanta.2021.122499. Epub 2021 May 6.

Abstract

In this work, ZnO nanorods (ZnO NRs) with different sizes were hydrothermally grown on the surface of Whatman filter paper for the fabrication of a microfluidic paper-based device (μPAD) for the simultaneous detection of glucose and uric acid. As dual enzymatic reaction was employed for the colorimetric detection in this μPAD, the presence of ZnO NRs promoted the enzyme immobilization thus significantly enhancing the colorimetric signal. The coffee ring effect was effectively conquered by the uniform distribution of ZnO NR as well as a specialized double-layered μPAD design. Meanwhile, two color indicators with distinct colors were used to provide complementary results to better quantify the concentration of the analytes by naked eye. As a result, two linear calibration curves were obtained for the detection of glucose (0.01-10 mmol L) and uric acid (0.01-5 mmol L), along with a LOD of 3 μmol L for glucose and 4 μmol L for uric acid, respectively. The practical usefulness of the proposed μPAD was further validated by the simultaneous analysis of glucose and uric acid in serum samples and urine samples.

摘要

在这项工作中,通过水热法在 Whatman 滤纸上生长出不同尺寸的氧化锌纳米棒(ZnO NRs),用于制造用于同时检测葡萄糖和尿酸的微流控纸基装置(μPAD)。由于在该 μPAD 中采用了双酶反应进行比色检测,因此 ZnO NRs 的存在促进了酶的固定化,从而显著增强了比色信号。均匀分布的 ZnO NR 以及专门的双层 μPAD 设计有效地克服了咖啡环效应。同时,使用两种具有明显颜色的颜色指示剂提供互补的结果,通过肉眼更好地定量分析物的浓度。结果,得到了用于检测葡萄糖(0.01-10 mmol L)和尿酸(0.01-5 mmol L)的两条线性校准曲线,葡萄糖的检测限为 3 μmol L,尿酸的检测限为 4 μmol L。通过对血清样本和尿液样本中葡萄糖和尿酸的同时分析,进一步验证了所提出的 μPAD 的实际用途。

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