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开发了一种 Cu 纳米花修饰的柔性针型微电极,并将其应用于体内葡萄糖的连续监测。

Development of Cu nanoflowers modified the flexible needle-type microelectrode and its application in continuous monitoring glucose in vivo.

机构信息

Research Center of Experimental Acupuncture Science, College of Acumox and Tuina, Tianjin University of Traditional Chinese Medicine, Tianjin 300193, PR China.

Research Center of Experimental Acupuncture Science, College of Acumox and Tuina, Tianjin University of Traditional Chinese Medicine, Tianjin 300193, PR China.

出版信息

Biosens Bioelectron. 2018 Jul 1;110:44-51. doi: 10.1016/j.bios.2018.03.024. Epub 2018 Mar 13.

DOI:10.1016/j.bios.2018.03.024
PMID:29587193
Abstract

A minimally invasive glucose microbiosensor based the flexibly integrated electrode for continuous monitoring glucose in vivo has been developed in this study. This was achieved by coating needle-type microelectrode with Cu nanoflowers, nafion, glucose oxidase (GOD) and polyurethane (PU) membranes, successfully prepared with layer-by-layer deposition. The Cu nanomaterials provided a large specific surface area and electrocatalytic activity for glucose detection. The PU layers as mass-transport limiting membranes significantly enhanced the linearity and stability of sensors. The resulting biosensor exhibited a wide linear range of 0-20 mM, with a good sensitivity of 42.38 nA mM (correlation coefficient r was 0.99) and a fast response time of less than 15 s. In vivo implantable experiments using anesthetized rats showed excellent real-time response to the variation of blood glucose concentration. And the variation tendency of sensor output was consistent with that using the glucose meter. Overall, the results supported the suitability of this microsensor for measuring rapid changes of glucose in vivo. This work offers a promising approach in implantable device applications related to diabetes management as well as other medical diagnosis.

摘要

本研究开发了一种基于灵活集成电极的微创葡萄糖微生物传感器,用于在体连续监测葡萄糖。这是通过在针型微电极上涂覆 Cu 纳米花、Nafion、葡萄糖氧化酶 (GOD) 和聚氨酯 (PU) 膜来实现的,这些膜是通过层层沉积成功制备的。Cu 纳米材料为葡萄糖检测提供了大的比表面积和电催化活性。PU 层作为传质限制膜,显著提高了传感器的线性度和稳定性。所得生物传感器表现出 0-20 mM 的宽线性范围,具有良好的灵敏度为 42.38 nA mM(相关系数 r 为 0.99)和小于 15 s 的快速响应时间。使用麻醉大鼠进行的体内植入实验表明,该传感器对血糖浓度变化具有出色的实时响应。并且传感器输出的变化趋势与使用血糖仪的变化趋势一致。总体而言,这些结果支持该微传感器在测量体内葡萄糖快速变化方面的适用性。这项工作为与糖尿病管理以及其他医学诊断相关的植入式设备应用提供了一种很有前途的方法。

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