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用于抗生物污染生物电极的多巴胺-透明质酸共轭物的电化学沉积

Electrochemical deposition of dopamine-hyaluronic acid conjugates for anti-biofouling bioelectrodes.

作者信息

Kim Semin, Jang Yohan, Jang Lindy K, Sunwoo Sung Hyuk, Kim Tae-Il, Cho Seung-Woo, Lee Jae Young

机构信息

School of Materials Science and Engineering, Gwangju Institute of Science and Engineering (GIST), Gwangju 500-712, Republic of Korea.

出版信息

J Mater Chem B. 2017 Jun 21;5(23):4507-4513. doi: 10.1039/c7tb00028f. Epub 2017 Apr 25.

Abstract

Bioelectrodes have been widely used to effectively mediate electrical signals with biological systems for various biomedical applications, such as biosensors and prosthetic probes. However, the electrical properties of bioelectrodes are frequently degraded in the biological milieu due to biofouling of bioelectrode surfaces. Hence, the development of simple and effective strategies for bioelectrode surface modification is important for the mitigation of biofouling. To this end, we electrochemically modify electrodes with dopamine-conjugated hyaluronic acid (DA-HA); the modified electrodes exhibit highly hydrophilic surfaces. In addition, the electrochemical impedance of the DA-HA-modified electrodes remains similar to those of bare electrodes. The DA-HA-modified electrodes showed reduced non-specific protein adsorption and minimal adhesion of fibroblasts. Our novel electrochemical passivation of electrodes using DA-HA will contribute to the further development of fouling-resistant and biocompatible bioelectrodes. The electrodeposition of DA-HA can also be potentially applied for general surface modification of other metallic and conducting materials for various applications.

摘要

生物电极已被广泛用于有效地介导与生物系统的电信号,用于各种生物医学应用,如生物传感器和假体探针。然而,由于生物电极表面的生物污垢,生物电极的电学性质在生物环境中经常会退化。因此,开发简单有效的生物电极表面修饰策略对于减轻生物污垢很重要。为此,我们用多巴胺共轭透明质酸(DA-HA)对电极进行电化学修饰;修饰后的电极呈现出高度亲水的表面。此外,DA-HA修饰电极的电化学阻抗与裸电极相似。DA-HA修饰电极显示出非特异性蛋白质吸附减少和成纤维细胞的粘附最小。我们使用DA-HA对电极进行的新型电化学钝化将有助于抗污垢和生物相容性生物电极的进一步发展。DA-HA的电沉积也可能潜在地应用于其他金属和导电材料的一般表面修饰,用于各种应用。

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