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A Noninvasive Sweat Glucose Biosensor Based on Glucose Oxidase/Multiwalled Carbon Nanotubes/Ferrocene-Polyaniline Film/Cu Electrodes

机译:一种基于葡萄糖氧化酶/多壁碳纳米管/二茂铁-聚苯胺膜/Cu 电极的无创汗液葡萄糖生物传感器

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摘要

Diabetes remains a great threat to human beings’ health and its world prevalence is projected to reach 9.9% by 2045. At present, the detection methods used are often invasive, cumbersome and time-consuming, thus increasing the burden on patients. In this paper, we propose a novel noninvasive and low-cost biosensor capable of detecting glucose in human sweat using enzyme-based electrodes for point-of-care uses. Specifically, an electrochemical method is applied for detection and the electrodes are covered with multilayered films including ferrocene-polyaniline (F-P), multi-walled carbon nanotubes (MWCNTs) and glucose oxidase (GOx) on Cu substrates (GOx/MWCNTs/F-P/Cu). The coated layers enhance the immobilization of GOx, increase the conductivity of the anode and improve the electrochemical properties of the electrode. Compared with the Cu electrode and the F-P/Cu electrode, a maximum peak current is obtained when the MWCNTs/F-P/Cu electrode is applied. We also study its current response by cyclic voltammetry (CV) at different concentrations (0–2.0 mM) of glucose solution. The best current response is obtained at 0.25 V using chronoamperometry. The effective working lifetime of an electrode is up to 8 days. Finally, to demonstrate the capability of the electrode, a portable, miniaturized and integrated detection device based on the GOx/MWCNTs/F-P/Cu electrode is developed. The results exhibit a short response time of 5 s and a correlation coefficient R2 of 0.9847 between the response current of sweat with blood glucose concentration. The LOD is of 0.081 mM and the reproducibility achieved in terms of RSD is 3.55%. The sweat glucose sensor is noninvasive and point-of-care, which shows great development potential in the health examination and monitoring field.
机译:糖尿病仍然是人类健康的巨大威胁,预计到 2045 年,其全球患病率将达到 9.9%。目前,使用的检测方法往往是侵入性的、繁琐的、耗时的,从而增加了患者的负担。在本文中,我们提出了一种新型无创且低成本的生物传感器,能够使用基于酶的电极检测人体汗液中的葡萄糖,用于护理点用途。具体来说,采用电化学方法进行检测,电极上覆盖有多层薄膜,包括二茂铁-聚苯胺 (F-P)、多壁碳纳米管 (MWCNT) 和铜衬底上的葡萄糖氧化酶 (GOx) (GOx/MWCNTs/F-P/Cu)。涂层增强了 GOx 的固定化,增加了阳极的电导率并改善了电极的电化学性能。与 Cu 电极和 F-P/Cu 电极相比,当应用 MWCNTs/F-P/Cu 电极时,获得了最大的峰值电流。我们还通过循环伏安法 (CV) 研究了在不同浓度 (0–2.0 mM) 葡萄糖溶液下的电流响应。使用计时安培法在 0.25 V 时获得最佳电流响应。电极的有效工作寿命长达 8 天。最后,为了证明电极的性能,研制了一种基于 GOx/MWCNTs/F-P/Cu 电极的便携式、小型化、一体化检测装置。结果显示响应时间短,为 5 s,相关系数 R2 为 0。9847 汗液响应电流与血糖浓度之间。LOD 为 0.081 mM,RSD 重现性为 3.55%。汗液葡萄糖传感器是无创的、即时的,在健康检查和监测领域显示出巨大的发展潜力。

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