Department of Chemical Engineering, Faculty of Engineering, University of Kashan, Kashan, Iran.
Biotechnology Division, Department of Cell and Molecular Biology, University of Kashan, Kashan, Iran.
Talanta. 2018 Jan 1;176:195-207. doi: 10.1016/j.talanta.2017.08.039. Epub 2017 Aug 12.
Cytochrome c (Cyt c) has been used as a model protein to investigate the characters of modified electrodes by many researchers. It has been also employed to construct biosensors to detect hydrogen peroxide, nitrate, superoxide, and etc. Cyt c immobilization techniques, including physical adsorption, entrapment in hydrogel or polymers, layer-by-layer assembly, Langmuir-Blodgett, and covalent attachment are discussed followed by various electrochemical methods applied in the electrode modification. The exploration of some modified protein electrodes, for example, screen printed, microperoxidase and engineered Cyt c are also presented. The preparation, characterizations and some properties of nanocomposites to modify electrode surface for immobilizing Cyt c are highlighted. This review is attempted to discuss the influences of the physical and chemical properties of the substrate materials, such as specific area and surface charge on the protein loading and electron transfer of Cyt c briefly. The comparative information of Cyt c-based electrochemical modified electrodes, such as average surface coverage, sensitivity, linear range, and detection limit of the analyte of interest is also summarized.
细胞色素 c(Cyt c)一直被许多研究人员用作研究修饰电极特性的模型蛋白。它也被用于构建生物传感器来检测过氧化氢、硝酸盐、超氧化物等。本文介绍了 Cyt c 的固定化技术,包括物理吸附、水凝胶或聚合物包埋、层层组装、Langmuir-Blodgett 和共价附着,以及应用于电极修饰的各种电化学方法。还介绍了一些修饰蛋白电极的探索,例如,丝网印刷、微过氧化物酶和工程 Cyt c。强调了用于固定 Cyt c 的纳米复合材料修饰电极表面的制备、表征和一些性质。本文试图简要讨论基底材料的物理和化学性质,如比表面积和表面电荷对 Cyt c 负载和电子转移的影响。还总结了基于 Cyt c 的电化学修饰电极的比较信息,例如感兴趣分析物的平均表面覆盖率、灵敏度、线性范围和检测限。