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高效监测葡萄糖的柔性自修复电化学水凝胶传感器。

Flexible and self-healing electrochemical hydrogel sensor with high efficiency toward glucose monitoring.

机构信息

National Engineering Research Center for Biomaterials, Sichuan University, Chengdu, Sichuan, 610065, China.

College of Chemistry and Materials Science, Center for Nano Science and Technology, Anhui Normal University, Wuhu, 241000, China.

出版信息

Biosens Bioelectron. 2020 May 1;155:112105. doi: 10.1016/j.bios.2020.112105. Epub 2020 Feb 19.

Abstract

The commercial sensor of a continuous glucose monitoring system suffers from restricted penetration of glucose in the dense sensing coating, uncontrolled leakage of the glucose oxidase and electrocatalytic medium, and susceptibility to mechanical damage. Herein, a self-healing hydrogel based on quaternized chitosan and oxidized dextran was designed, and CeO/MnO hollow nanospheres were covalently linked in the hydrogel as the electrocatalytic medium. Glucose oxidase was loaded via the strong electrostatic interactions with the CeO/MnO hollow nanospheres. An extra covering agent was coated on the hydrogel to prevent the leakage of the glucose oxidase and electrocatalytic medium. Covalent linkage of the hydrogel on a bendable chip formed a flexible glucose sensor, which showed a wide linear range (1-111 mM), fast response (less than 3 s), and high sensitivity (176 μA mM cm). The hydrogel-based sensor was self-healable, and could continuously work for over 30 days. Thus, this study provides a method to simultaneously prevent the leakage of the electrocatalytic medium, promote the sensitivity of glucose detection, and tolerate the mechanical damage, which shows great potential for continuous glucose monitoring.

摘要

商用的连续血糖监测系统传感器受到葡萄糖在密集感测涂层中渗透受限、葡萄糖氧化酶和电催化介质不受控制的泄漏以及易受机械损伤的影响。在此,设计了一种基于季铵化壳聚糖和氧化葡聚糖的自修复水凝胶,并将 CeO/MnO 中空纳米球共价连接在水凝胶中作为电催化介质。葡萄糖氧化酶通过与 CeO/MnO 中空纳米球的强静电相互作用进行负载。在水凝胶上涂覆一层额外的覆盖剂,以防止葡萄糖氧化酶和电催化介质的泄漏。水凝胶通过共价键连接到可弯曲的芯片上,形成了一种柔性葡萄糖传感器,该传感器具有较宽的线性范围(1-111mM)、快速的响应时间(小于 3s)和较高的灵敏度(176μA·mM·cm)。基于水凝胶的传感器具有自修复能力,并且可以连续工作超过 30 天。因此,该研究提供了一种同时防止电催化介质泄漏、提高葡萄糖检测灵敏度和耐受机械损伤的方法,在连续血糖监测方面具有很大的应用潜力。

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