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载壳聚糖-补骨脂素生物缀合物的生物粘附纱布:一种氧化还原活性 pH 传感器平台。

Bioadhesive Gauze Embedded with Chitosan-Butein Bioconjugate: A Redox-Active pH Sensor Platform.

机构信息

Electrodics and Electrocatalysis Division, CSIR-Central Electrochemical Research Institute (CECRI), Karaikudi, Sivagangai 630 003, TN, India.

Academy of Scientific & Innovative Research (AcSIR), Ghaziabad 201 002, UP, India.

出版信息

Biosensors (Basel). 2022 Dec 21;13(1):6. doi: 10.3390/bios13010006.

Abstract

With the ever-growing global wound care market, demand for robust redox-active healthcare material is obvious for the construction of wearable sensor platforms. Surface reactive functional group-rich material like chitosan holds huge potential for electrochemical biosensor application. Herein, a metal-free redox-active chitosan-butein (CSB) bioconjugate is processed into epidermal bioadhesive electrode material useful for pH sensors promising toward wound site analysis. A two-electrode system devised for conducting carbon-reinforced silver chloride paste and CSB-modified carbon/silver chloride matrix was used as a reference and working electrodes, respectively. Dimensions of working and reference electrodes (4 mm) were designed by 2D cutter plotter-assisted stenciling. The cross-sectional topology of the constructed adhesive CSB-sensor platform exhibits an average surface thickness of 183 ± 2 μm. Cyclic voltammetric analysis revealed the inherent 2e/2H transfer attributed to the catechol OH groups of graft polymerized CSB modified on adhesive gauze. As-fabricated modified electrode substrates exhibit distinguishable potential differences with respect to electrolytes of varied pH (between 5 to 9), promising for wound site analysis.

摘要

随着全球伤口护理市场的不断增长,对于可穿戴传感器平台构建所需的稳健氧化还原活性医疗材料的需求显而易见。壳聚糖等表面反应性官能团丰富的材料在电化学生物传感器应用方面具有巨大的潜力。本文制备了一种无金属氧化还原活性壳聚糖-柳穿鱼素(CSB)生物缀合物,并将其加工成表皮生物粘附电极材料,可用于 pH 传感器,有望用于伤口部位分析。设计了一个由两个电极组成的系统,分别使用碳增强型氯化银糊剂和 CSB 修饰的碳/氯化银基质作为参比电极和工作电极。工作电极和参比电极的尺寸(4 毫米)通过二维切割机辅助的模板印刷设计。构建的粘附 CSB-传感器平台的横截面拓扑结构显示,平均表面厚度为 183 ± 2 μm。循环伏安分析显示,由于接枝聚合的 CSB 修饰在粘附纱布上的儿茶酚 OH 基团,存在固有 2e/2H 转移。所制造的修饰电极基底在不同 pH(5 至 9 之间)的电解质中表现出可区分的电位差,有望用于伤口部位分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc8d/9855405/97b8a06c5fd9/biosensors-13-00006-g001.jpg

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