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A bifunctional biosensor for subcutaneous glucose monitoring by reverse iontophoresis

机译:用于通过反向离子电渗疗法监测皮下葡萄糖的双功能生物传感器

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摘要

A continuous, noninvasive glucose monitoring method is necessary for diabetic patients to reduce the risk of hypoglycemia. This paper was to develop a bifunctional biosensor for the simultaneous extracting and detecting the subcutaneous glucose by reverse iontophoresis. The biosensor was constructed by a tri-electrode planar configuration and multi-layer sensitive membrane composed of mediator, enzyme and cross linking agents. A hydrogel membrane was deposited on the top of the device to act as a collected reservoir of the extracted glucose. The electrochemical characteristic of the amperometric biosensor was evaluated using cyclic voltammetry at applied potentials from -0.2 V to 0.6 V vs. Ag vertical bar AgCl electrode. The glucose biosensor showed a high sensitivity of 14.24 nA mu M(-1) cm(-2) at a low applied potential (-0.1 V vs. Ag vertical bar AgCl). Finally, the biosensor was used for noninvasive glucose monitoring by reverse iontophoresis using the naked mouse skin as the model. An excellent linear relationship (r(2) = 0.99) was found between the subcutaneous glucose concentration (0-18 mM) and the biosensor current response. The results suggest that the biosensor was suitable for subcutaneous glucose monitoring by reverse iontophoresis.
机译:糖尿病患者必须采用连续,无创的葡萄糖监测方法,以降低低血糖的风险。本文旨在开发一种双功能生物传感器,用于通过反向离子电渗疗法同时提取和检测皮下葡萄糖。生物传感器由三电极平面结构和由介体,酶和交联剂组成的多层敏感膜构成。水凝胶膜沉积在装置的顶部,以充当提取葡萄糖的收集容器。使用循环伏安法在相对于Ag垂直条AgCl电极的施加电压为-0.2 V至0.6 V的条件下,使用循环伏安法评估了安培生物传感器的电化学特性。葡萄糖生物传感器在低施加电位(-0.1 V vs. Ag垂直条AgCl)下显示出14.24 nAμM(-1)cm(-2)的高灵敏度。最后,以裸鼠皮肤为模型,通过反向离子电渗疗法将生物传感器用于无创葡萄糖监测。发现皮下葡萄糖浓度(0-18 mM)与生物传感器电流响应之间存在极好的线性关系(r(2)= 0.99)。结果表明该生物传感器适用于通过反向离子电渗疗法进行皮下葡萄糖监测。

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