Yu Rongmin, Ma Ming, Wang Lingling, Xie Qingji, Cao Zhijun, Jiang Xueqin, Yao Shouzhuo
Key Laboratory of Chemical Biology and Traditional Chinese Medicine Research, Ministry of Education of China, College of Chemistry and Chemical Engineering, Hunan Normal University, Changsha, PR China.
Biosens Bioelectron. 2009 Feb 15;24(6):1771-6. doi: 10.1016/j.bios.2008.09.010. Epub 2008 Sep 20.
The electrochemical quartz crystal microbalance (EQCM) technique was used to investigate the electrochemistry of neutral red (NR) in phosphate buffer solution (PBS) and the effects of coexisting heparin (Hep) or chondroitin sulfate (CS) for the first time. The pH dependence of the electrochemistry of NR was examined, and a V-shaped frequency response (versus time) was observed during the cyclic voltammetric experiment of NR in a nearly neutral medium (pH ca. 6.10-7.00), being due to the electrodeposition and stripping of the poorly soluble reduced product of NR (NR(Red)) at these pH values. The effects of potential scan rate, the concentration of NR, and several supporting electrolytes were examined at pH 6.80. The V-shaped response to the redox switching of NR was weakened by the introduction of Hep or CS, being due to the increased inhibition of the NR(Red) electrodeposition probably via the electrostatic interaction of the NR and especially the NR(Red) with Hep or CS. The height of the V-shaped response decreases with the increase of Hep or CS concentration, with limits of detection down to 3 nmol L(-1) for Hep and 2 nmol L(-1) for CS, respectively. The novel and surface-regenerable EQCM assay protocol based on the electrochemically switchable deposition of a dye is highly recommended for wide biosensing applications.
首次采用电化学石英晶体微天平(EQCM)技术研究了中性红(NR)在磷酸盐缓冲溶液(PBS)中的电化学行为以及共存的肝素(Hep)或硫酸软骨素(CS)的影响。研究了NR电化学行为的pH依赖性,在近中性介质(pH约6.10 - 7.00)中对NR进行循环伏安实验时观察到V形频率响应(相对于时间),这是由于在这些pH值下NR的难溶性还原产物(NR(Red))的电沉积和溶出。在pH 6.80时研究了电位扫描速率、NR浓度和几种支持电解质的影响。引入Hep或CS会减弱NR氧化还原转换的V形响应,这可能是由于NR尤其是NR(Red)与Hep或CS的静电相互作用增加了对NR(Red)电沉积的抑制作用。V形响应的高度随Hep或CS浓度的增加而降低,Hep和CS的检测限分别低至3 nmol L(-1)和2 nmol L(-1)。基于染料电化学可切换沉积的新型且表面可再生的EQCM检测方案非常推荐用于广泛的生物传感应用。