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基于淀粉样白蛋白复合水凝胶的用于准确监测多巴胺的抗污抗菌可穿戴电化学汗液传感器。

Antifouling and antimicrobial wearable electrochemical sweat sensors for accurate dopamine monitoring based on amyloid albumin composite hydrogels.

机构信息

Key Laboratory of Optic-electric Sensing and Analytical Chemistry for Life Science, MOE, Shandong Key Laboratory of Biochemical Analysis, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao, 266042, PR China.

Key Laboratory of Optic-electric Sensing and Analytical Chemistry for Life Science, MOE, Shandong Key Laboratory of Biochemical Analysis, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao, 266042, PR China.

出版信息

Biosens Bioelectron. 2024 Nov 15;264:116640. doi: 10.1016/j.bios.2024.116640. Epub 2024 Aug 8.

Abstract

Wearable electrochemical sweat sensors are potentially promising for health monitoring in a continuous and non-invasive mode with high sensitivity. However, due to the complexity of sweat composition and the growth of skin bacteria, the wearable sweat sensors may gradually lose their sensitivity or even fail over time. To deal with this issue, herein, we proposed a new strategy to construct wearable sweat sensors with antifouling and antimicrobial capabilities. Amyloid albumin hydrogels (ABSAG) were doped with two-dimensional (2D) nanomaterial MXene and CeO nanorods to obtain the antifouling and antimicrobial amyloid albumin composite hydrogels (ABSACG, CeO/MXene/ABSAG), and the wearable sensors were prepared by modifying flexible screen-printed electrodes with the ABSACG. Within this sensing system, the hydrophilic ABSAG possesses strong hydration capability, and it can form a hydration layer on the electrode surface to resist biofouling in sweat. The 2D nanomaterial MXene dispersed in the hydrogel endows the hydrogel with good conductivity and electrocatalytic capability, while the doping of CeO nanorods further improves the electrocatalytic performance of the hydrogel and also provides excellent antimicrobial capability. The designed wearable electrochemical sensors based on the ABSACG demonstrated satisfying antifouling and antimicrobial abilities, and they were capable of detecting dopamine accurately in human sweat. It is expected that wearable sensors utilizing the antifouling and antimicrobial ABSACG may find practical applications in human body fluids analysis and health monitoring.

摘要

可穿戴电化学汗液传感器具有连续、非侵入式监测健康的潜力,且具有高灵敏度。然而,由于汗液成分的复杂性和皮肤细菌的生长,可穿戴汗液传感器可能会随着时间的推移逐渐失去其灵敏度,甚至失效。针对这一问题,本文提出了一种构建具有抗污和抗菌能力的可穿戴汗液传感器的新策略。将淀粉样白蛋白水凝胶(ABSAG)掺杂二维(2D)纳米材料 MXene 和 CeO 纳米棒,得到具有抗污和抗菌性能的淀粉样白蛋白复合水凝胶(ABSACG,CeO/MXene/ABSAG),并通过用 ABSACG 修饰柔性丝网印刷电极来制备可穿戴传感器。在这个传感系统中,亲水性的 ABSAG 具有很强的水合能力,可以在电极表面形成水化层,抵抗汗液中的生物污垢。分散在水凝胶中的 2D 纳米材料 MXene 赋予水凝胶良好的导电性和电催化能力,而 CeO 纳米棒的掺杂进一步提高了水凝胶的电催化性能,同时提供了优异的抗菌能力。基于 ABSACG 的设计可穿戴电化学传感器表现出令人满意的抗污和抗菌能力,能够准确地检测人汗液中的多巴胺。预计利用具有抗污和抗菌能力的 ABSACG 的可穿戴传感器可能在人体液分析和健康监测方面有实际应用。

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