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基于金属纳米材料的可穿戴无创葡萄糖传感器。

Wearable non-invasive glucose sensors based on metallic nanomaterials.

作者信息

Zhang Sheng, Zhao Wenjie, Zeng Junyan, He Zhaotao, Wang Xiang, Zhu Zehui, Hu Runqing, Liu Chen, Wang Qianqian

机构信息

Ningbo Innovation Center, Zhejiang University, Ningbo, 315100, China.

School of Mechanical Engineering, Zhejiang University, Hangzhou, 310027, China.

出版信息

Mater Today Bio. 2023 Apr 15;20:100638. doi: 10.1016/j.mtbio.2023.100638. eCollection 2023 Jun.

Abstract

The development of wearable non-invasive glucose sensors provides a convenient technical means to monitor the glucose concentration of diabetes patients without discomfortability and risk of infection. Apart from enzymes as typical catalytic materials, the active catalytic materials of the glucose sensor are mainly composed of polymers, metals, alloys, metal compounds, and various metals that can undergo catalytic oxidation with glucose. Among them, metallic nanomaterials are the optimal materials applied in the field of wearable non-invasive glucose sensing due to good biocompatibility, large specific surface area, high catalytic activity, and strong adsorption capacity. This review summarizes the metallic nanomaterials used in wearable non-invasive glucose sensors including zero-dimensional (0D), one-dimensional (1D), and two-dimensional (2D) monometallic nanomaterials, bimetallic nanomaterials, metal oxide nanomaterials, etc. Besides, the applications of wearable non-invasive biosensors based on these metallic nanomaterials towards glucose detection are summarized in detail and the development trend of the wearable non-invasive glucose sensors based on metallic nanomaterials is also outlook.

摘要

可穿戴无创葡萄糖传感器的发展提供了一种便捷的技术手段,可在无不适感和感染风险的情况下监测糖尿病患者的葡萄糖浓度。除了酶作为典型的催化材料外,葡萄糖传感器的活性催化材料主要由聚合物、金属、合金、金属化合物以及各种可与葡萄糖发生催化氧化反应的金属组成。其中,金属纳米材料因其良好的生物相容性、大比表面积、高催化活性和强吸附能力,是可穿戴无创葡萄糖传感领域应用的最佳材料。本文综述了可穿戴无创葡萄糖传感器中使用的金属纳米材料,包括零维(0D)、一维(1D)和二维(2D)单金属纳米材料、双金属纳米材料、金属氧化物纳米材料等。此外,还详细总结了基于这些金属纳米材料的可穿戴无创生物传感器在葡萄糖检测方面的应用,并展望了基于金属纳米材料的可穿戴无创葡萄糖传感器的发展趋势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79bd/10148187/ff30a7db6cfe/ga1.jpg

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