Mazzotta E, Picca R A, Malitesta C, Piletsky S A, Piletska E V
Laboratorio di Chimica Analitica, Dipartimento di Scienza dei Materiali, Università del Salento, Via Arnesano, Lecce, Italy.
Biosens Bioelectron. 2008 Feb 28;23(7):1152-6. doi: 10.1016/j.bios.2007.09.020. Epub 2007 Oct 2.
A voltammetric sensor for (-)-ephedrine has been prepared by a novel approach based on immobilisation of an imprinted polymer for ephedrine (MIPE) in an electrosynthesised polypyrrole (PPY) film. Composite films were grown potentiostatically at 1.0 V vs. Pt (QRE) on a glassy carbon electrode using an unconventional "upside-down" (UD) geometry for the three-electrode cell. As a consequence, a high MIP loading was obtained, as revealed by SEM. The sensor response was evaluated, after overoxidation of PPY matrix, by cyclic voltammetry after pre-concentration in a buffered solution of analyte in 0.5-3 mM concentration range. An ephedrine peak at approximately 0.9 V increasing with concentration and saturating at high concentrations was evident. PPY-modified electrode showed a response, which was distinctly lower than the MIP response for the same concentration of the template. The effect of potential interferences including compounds usually found in human fluids (ascorbic acid, uric acid, urea, glucose, sorbitol, glycine, dopamine) was examined.
一种用于检测(-)-麻黄碱的伏安传感器,是通过一种基于将麻黄碱印迹聚合物(MIPE)固定在电合成聚吡咯(PPY)膜中的新方法制备的。使用三电极池的非常规“倒置”(UD)几何结构,在玻碳电极上以相对于铂(准参比电极)1.0 V的恒电位生长复合膜。结果,扫描电子显微镜显示获得了高MIP负载量。在PPY基质过氧化后,通过循环伏安法在浓度范围为0.5 - 3 mM的分析物缓冲溶液中预浓缩后评估传感器响应。在约0.9 V处有一个麻黄碱峰,其随浓度增加并在高浓度时达到饱和。PPY修饰电极显示出响应,对于相同浓度的模板,该响应明显低于MIP响应。研究了包括通常在人体体液中发现的化合物(抗坏血酸、尿酸、尿素、葡萄糖、山梨醇、甘氨酸、多巴胺)在内的潜在干扰物的影响。