CIBER de Bioingeniería, Biomateriales y Nanomedicina (CIBER-BBN), Barcelona, Spain.
Biosens Bioelectron. 2013 May 15;43:211-7. doi: 10.1016/j.bios.2012.12.017. Epub 2012 Dec 20.
A new electrochemical immunosensor has been developed to detect sulfonamide antibiotic residues in food samples. The immunosensor presented uses immunoreagents specifically developed for the broad recognition of the sulfonamide antibiotic family, a graphite composite electrode (GEC), biofunctionalized magnetic μ-particles and electrochemical nanoprobes prepared by labeling the specific antibodies with CdS nanoparticles (CdSNP). After the immunochemical reaction, the CdSNP are dissolved and the metal ions released are reduced at the electrode and read as in the form of current or charge signal, by the well-known anodic stripping technique. Due to the amplification effect on the amperometric/coulombimetric signal produced by the CdSNP, a high detectability can be reached. Thus, sulfapyridine (SPY), one of the most widely used sulfonamide congeners, can be detected in buffer with an IC50current of 0.20±0.25μgL(-1). The immunosensor has been applied to the analysis of residues of this antibiotic in honey samples. Due to the reported formation of sulfonamide-sugar conjugates in this type of matrix, honey samples are first hydrolyzed in acidic media. The use of magnetic particles minimizes the matrix effect allowing to reach a detectability (LOD, limit of detection) of 0.11μgkg(-1) (current measurements), far below the limits established in some countries for these types of residues in honey samples. Due to the use of magnetic racks, multiple samples can be run simultaneously. The whole analysis process can be performed in around 22min.
一种新的电化学免疫传感器已被开发用于检测食品样品中的磺胺类抗生素残留。所提出的免疫传感器使用专门为磺胺类抗生素家族的广泛识别而开发的免疫试剂、石墨复合电极 (GEC)、生物功能化磁性 μ 颗粒和通过用 CdS 纳米粒子 (CdSNP) 标记特异性抗体制备的电化学纳米探针。在免疫化学反应后,CdSNP 溶解,释放的金属离子在电极上被还原,并以电流或电荷信号的形式读取,这是通过众所周知的阳极溶出技术实现的。由于 CdSNP 对安培/库仑信号产生的放大效应,可以达到高的检测灵敏度。因此,可以检测到最广泛使用的磺胺类同系物之一磺胺嘧啶 (SPY),在缓冲液中的 IC50current 为 0.20±0.25μgL(-1)。该免疫传感器已应用于蜂蜜样品中这种抗生素残留的分析。由于在这种基质中报道了磺胺-糖缀合物的形成,因此首先在酸性介质中对蜂蜜样品进行水解。使用磁性颗粒可以最小化基质效应,从而达到 0.11μgkg(-1) 的检测限 (LOD,检出限)(电流测量),远低于一些国家对蜂蜜样品中这些类型残留的规定限值。由于使用了磁性架,可以同时运行多个样品。整个分析过程可以在大约 22 分钟内完成。