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喷墨打印的具有高灵敏度和低干扰的柔性非酶乳酸传感器,使用堆叠的 NiO/NiO-Nafion 纳米复合材料电极,并通过临床血液测试验证。

Inkjet-printed flexible non-enzymatic lactate sensor with high sensitivity and low interference using a stacked NiO/NiO-Nafion nanocomposite electrode with clinical blood test verification.

机构信息

Microsystems Integration Laboratory, Institute of Electronics Engineering, National Yang Ming Chiao Tung University, Taiwan, 30010, Taiwan.

Microsystems Integration Laboratory, Institute of Electronics Engineering, National Yang Ming Chiao Tung University, Taiwan, 30010, Taiwan.

出版信息

Talanta. 2022 Nov 1;249:123598. doi: 10.1016/j.talanta.2022.123598. Epub 2022 Jun 6.

Abstract

In this paper, we present a flexible, inkjet-printed, non-enzymatic lactate sensor with high sensitivity and specificity, using a stacked nickel oxide-Nafion nanocomposite/nickel oxide working electrode. Instead of deploying a pure Nafion film on the top of the nickel oxide particles, the nickel oxide-Nafion nanocomposite layer in the new electrode scheme functions not only as an anti-interfering layer but also a reactive layer and the bottom pure nickel oxide layer free from interfering substances mainly participates in the redox reaction to enhance the sensing current. Experimental results show that the sensor with a working electrode printed using a 30 μL NiO ink and a mixture of 30 μL NiO and 4 μL Nafion ink can exhibit an anti-interference ability of >95%, a sensitivity of 20.56 nA/mM/mm, and limit of detection (LoD) of 0.27 mM satisfying the criteria for human lactate detection. In clinical trial, blood plasma test results show that lactate levels detected using this sensor have a strong linear correlation coefficient square of 0.959 with those measured using the colorimetry method used in hospitals, indicating its potential for application in the management of patients with abnormal lactate values requiring intensive care.

摘要

本文提出了一种具有高灵敏度和特异性的柔性、喷墨打印、非酶乳酸传感器,使用堆叠的氧化镍-纳滤复合纳米膜/氧化镍工作电极。在新的电极方案中,氧化镍-纳滤复合纳米膜层不仅作为抗干扰层,而且作为反应层,而底部的纯净氧化镍层主要参与氧化还原反应,以增强传感电流,而不是在氧化镍颗粒的顶部部署纯纳滤膜。实验结果表明,使用 30 μL NiO 油墨和 30 μL NiO 和 4 μL 纳滤油墨混合物打印工作电极的传感器可以表现出>95%的抗干扰能力、20.56 nA/mM/mm 的灵敏度和 0.27 mM 的检测限(LoD),满足人体乳酸检测的标准。在临床试验中,血浆测试结果表明,使用该传感器检测到的乳酸水平与医院使用比色法测量的乳酸水平具有很强的线性相关系数平方为 0.959,表明其在管理需要重症监护的异常乳酸值的患者方面具有应用潜力。

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