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细胞色素c在pH敏感聚合物界面上的可逆固定化及直接电子转移

Reversible immobilization and direct electron transfer of cytochrome c on a pH-sensitive polymer interface.

作者信息

Zhou Jianhua, Lu Xianbo, Hu Jianqiang, Li Jinghong

机构信息

Department of Chemistry, Key Laboratory of Bioorganic Phosphorus Chemistry and Chemical Biology, Tsinghua University, Beijing 100084, China.

出版信息

Chemistry. 2007;13(10):2847-53. doi: 10.1002/chem.200601335.

Abstract

A pH-sensitive polymer interface has been used as a matrix for reversible immobilization of cytochrome c (Cyt c) on an Au surface through a dip-coating process. The pH-sensitive behavior of the polymer brush interface has been demonstrated by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) measurements. The reversible immobilization and electron-transfer properties of Cyt c have been investigated by in situ UV/Vis spectrophotometry and CV. The results have shown that the poly(acrylic acid) (PAA) brush acted as an excellent adsorption matrix and a good accelerant for the direct electron transfer of Cyt c, which gave redox peaks with a formal potential of 40 mV versus Ag/AgCl in pH 7.6 phosphate buffer solution. The average surface coverage of Cyt c on the PAA film was about 1.7 x 10(-10) mol cm(-2), indicating a multilayer of Cyt c. The electron-transfer rate constant was calculated to be around 0.19 s(-1) according to the CV experiments. The interface was subjected to in situ attenuated total internal reflection Fourier-transform infrared (ATR-FTIR) spectroscopic analysis, in order to further confirm the immobilization of Cyt c on the surface. This polymer-protein system may have potential applications in the design of biosensors, protein separation, interfacial engineering, biomimetics, and so on.

摘要

一种pH敏感聚合物界面已被用作通过浸涂工艺将细胞色素c(Cyt c)可逆固定在金表面的基质。聚合物刷界面的pH敏感行为已通过循环伏安法(CV)和电化学阻抗谱(EIS)测量得到证明。通过原位紫外/可见分光光度法和CV研究了Cyt c的可逆固定化和电子转移特性。结果表明,聚丙烯酸(PAA)刷作为一种优异的吸附基质和Cyt c直接电子转移的良好促进剂,在pH 7.6磷酸盐缓冲溶液中给出了相对于Ag/AgCl的形式电位为40 mV的氧化还原峰。Cyt c在PAA膜上的平均表面覆盖率约为1.7×10⁻¹⁰ mol cm⁻²,表明形成了Cyt c的多层结构。根据CV实验计算出电子转移速率常数约为0.19 s⁻¹。对该界面进行了原位衰减全内反射傅里叶变换红外(ATR-FTIR)光谱分析,以进一步确认Cyt c在表面的固定化。这种聚合物-蛋白质体系在生物传感器设计、蛋白质分离、界面工程、仿生学等方面可能具有潜在应用。

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