Lamarca Rafaela Silva, de Faria Ricardo Adriano Dorledo, Zanoni Maria Valnice Boldrin, Nalin Marcelo, de Lima Gomes Paulo Clairmont Feitosa, Messaddeq Younès
Center for Optics, Photonics and Laser (COPL), Université Laval Quebec QC G1V0A6 Canada
UNESP, National Institute for Alternative Technologies of Detection, Toxicological Evaluation and Removal of Micropollutants and Radioactives (INCT-DATREM), Institute of Chemistry, São Paulo State University - UNESP P.O. Box 355 Araraquara SP 14800-900 Brazil.
RSC Adv. 2020 Jan 8;10(4):1838-1847. doi: 10.1039/c9ra09083e.
In this study an impedimetric immunosensor was developed in order to determine ciprofloxacin (CIP) in wastewater samples, an emergent contaminant widely found in wastewater. To achieve this, an anti-ciprofloxacin antibody was immobilized on the surface of a printed carbon electrode. Then, the developed immunosensor was applied in wastewater samples from Université Laval residences (Québec, Canada) through the load transfer resistance ( ) using [Fe(CN)] as a redox probe, and the average CIP concentration was found to be 2.90 × 10 μg mL. The observed changes presented a linear relationship from CIP concentrations of 10 to 1.0 μg mL, with detection and quantification limits of 2.50 × 10 and 7.90 × 10 μg mL, respectively. The immunosensor presented high selectivity and repeatability, as well as a good recovery rate in wastewater samples (97%). Significant interference with other compounds was not observed. The proposed method requires only 30 μL of sample without the use of organic solvents or preceding sample preparation and/or extraction techniques. Moreover, the method is fast: only 20 min of incubation followed by 2 min of analysis time was sufficient to obtain the CIP concentration. The method's estimated cost is U$ 2.00 per sample.
在本研究中,为了测定废水样品中的环丙沙星(CIP),开发了一种阻抗免疫传感器,CIP是一种在废水中广泛发现的新兴污染物。为此,将抗环丙沙星抗体固定在印刷碳电极表面。然后,通过使用[Fe(CN)]作为氧化还原探针的负载转移电阻,将开发的免疫传感器应用于加拿大魁北克拉瓦尔大学宿舍的废水样品中,发现CIP的平均浓度为2.90×10μg/mL。观察到的变化在CIP浓度为10至1.0μg/mL之间呈现线性关系,检测限和定量限分别为2.50×10和7.90×10μg/mL。该免疫传感器具有高选择性和可重复性,在废水样品中的回收率也很高(97%)。未观察到与其他化合物的显著干扰。所提出的方法仅需要30μL样品,无需使用有机溶剂或先前的样品制备和/或提取技术。此外,该方法速度快:仅需20分钟的孵育时间,随后2分钟的分析时间就足以获得CIP浓度。该方法估计每个样品的成本为2.00美元。