Faculty of Chemistry, Sensor and Biosensor Research Center (SBRC) & Nanoscience and Nanotechnology Research Center (NNRC), Razi University, P.O. Box 67149 Kermanshah, Islamic Republic of Iran.
Mol Biol Rep. 2012 Sep;39(9):8793-802. doi: 10.1007/s11033-012-1742-5. Epub 2012 Jul 1.
Oxyhydroxy cobalt CoO(OH) nanoparticles (Co-NPs) were prepared in horse spleen apoferritin (HsAFr) cavity. Transmission electron microscopy revealed the particle size was 5.5-6 nm. Mineralization effect on HsAFr was investigated by fluorescence and far-UV circular dichroism (far-UV CD) spectroscopies. The far-UV CD experiments indicated an increase in the α-helical content after mineralization. Intrinsic fluorescence data showed that mineralization acts as a quencher of HsAFr. For the first time, direct electron transfer between Co(NPs)-HsAFr and a glassy carbon electrode in the thin film of dihexadecylphosphate (DHP) was investigated by cyclic voltammetry (CV) to design a biosensor. The anionic surfactant DHP was used to achieve direct electron-transfer between Co(NPs)-HsAFr molecules and the GC electrode surface. CV result showed clearly a pair of well-defined and quasi-reversible redox peaks arise from Co(NPs)-HsAFr embedded in DHP film. This novel biosensor can be used in medical and industrial fields to detect different analytes.
氧羟钴 CoO(OH) 纳米粒子 (Co-NPs) 在马脾铁蛋白 (HsAFr) 腔中制备。透射电子显微镜显示粒径为 5.5-6nm。通过荧光和远紫外圆二色性 (far-UV CD) 光谱研究了 HsAFr 的矿化效应。远紫外 CD 实验表明矿化后α-螺旋含量增加。本征荧光数据表明矿化作用是 HsAFr 的猝灭剂。首次通过循环伏安法 (CV) 研究了 Co(NPs)-HsAFr 与二己基膦酸盐 (DHP) 薄膜中玻璃碳电极之间的直接电子转移,以设计生物传感器。阴离子表面活性剂 DHP 用于实现 Co(NPs)-HsAFr 分子与 GC 电极表面之间的直接电子转移。CV 结果清楚地表明,一对来自嵌入 DHP 膜中的 Co(NPs)-HsAFr 的良好定义且准可逆的氧化还原峰出现。这种新型生物传感器可用于医疗和工业领域以检测不同的分析物。