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基于不同形态 NiO 微球的离子液体复合膜中血红蛋白的直接电化学和电催化。

Direct electrochemistry and electrocatalysis of hemoglobin in composite film based on ionic liquid and NiO microspheres with different morphologies.

机构信息

College of Sciences, Xi'an University of Architecture and Technology, Xi'an 710055, China.

出版信息

Biosens Bioelectron. 2011 Jun 15;26(10):4082-7. doi: 10.1016/j.bios.2011.03.039. Epub 2011 Apr 8.

Abstract

Flowerlike, spherical, and walnutlike NiO microspheres were respectively mixed with ionic liquid (IL) to form three stable composite films, which were used to immobilize hemoglobin (Hb) on carbon paste electrodes. Spectroscopic and electrochemical examinations revealed that the three NiO/IL composites were biocompatible matrix for immobilizing Hb, which showed good stability and bioactivity. However, electrochemical studies demonstrated that flowerlike NiO microspheres were far more effective than the other two in adsorbing Hb and facilitating the electron transfer between Hb and underlying electrode, which resulted from its unique flower architecture and large surface area. With advantages of flowerlike NiO and ionic liquid, a pair of stable and well-defined quasi-reversible redox peaks of Hb were obtained with a formal potential of -0.275 V (vs. Ag/AgCl) in pH 7.0 buffer. Meantime, flowerlike NiO modified electrode showed better electrocatalytic activity toward hydrogen peroxide reduction with a high sensitivity (15.7μAmM(-1)), low detection limit (0.68 μM) and small apparent Michaelis-Menten constant K(M) (0.18 mM). Flowerlike NiO could be a promising matrix for the fabrication of direct electrochemical biosensors in biomedical analysis.

摘要

花状、球形和核桃状的 NiO 微球分别与离子液体 (IL) 混合,形成三种稳定的复合膜,用于将血红蛋白 (Hb) 固定在碳糊电极上。光谱和电化学研究表明,三种 NiO/IL 复合材料是固定 Hb 的生物相容性基质,具有良好的稳定性和生物活性。然而,电化学研究表明,花状 NiO 微球在吸附 Hb 和促进 Hb 与基底电极之间的电子转移方面比其他两种更为有效,这是由于其独特的花状结构和较大的表面积。由于花状 NiO 和离子液体的优势,在 pH 7.0 缓冲液中,获得了一对稳定且定义良好的 Hb 的准可逆氧化还原峰,其形式电位为 -0.275 V(相对于 Ag/AgCl)。同时,花状 NiO 修饰电极对过氧化氢还原具有更高的电催化活性,具有高灵敏度 (15.7μAmM(-1))、低检测限 (0.68 μM) 和小的表观米氏常数 K(M) (0.18 mM)。花状 NiO 可能是生物医学分析中制备直接电化学生物传感器的有前途的基质。

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