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An ultrasensitive competitive chemiluminescence immunosensor coupled flow injection cell modified by oxidized graphene-chitosan for the detection of Hg2+

机译:通过氧化石墨烯 - 壳聚糖进行超细竞争性化学发光免疫传感器偶联流量注射细胞,用于检测HG2 +

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摘要

In this work, an ultra-sensitive and simple chemiluminescence (CL) immunosensor has been constructed to detect Hg2+ in real water samples. It is based on the excellent properties of oxidized graphene and chitosan modified a novel flow cell to achieve satisfactory results. Oxidized graphene has good biocompatibility, can effectively immobilize antigens and construct an efficient biosensor interface. Chitosan has excellent biodegradability, excellent film-forming and biocompatibility. Hereby, oxidized graphene-chitosan composites provide a favorable microenvironrnent for immobilizing coating-antigen and introducing HRP-labeled secondary antibodies into the CL reaction of luminol-PIP-H2O2. With a competitive-type assay mode, the Hg2+ in solution competed with the immobilized coating antigen for the limited binding sites of monoclonal antibody, which resulted in the CL of this system decreases because of less HRP. At the optimal conditions, the CL signal displayed a good linear relation toward Hg2+ in the range of 0.001-300 ng mL(-1) with a detection limit (3 sigma) of 0.33 pg mL(-1). The immunosensor possessed acceptable accuracy, high specificity and reproducibility, and was applied to examine Hg2+ in real water samples and cream with favorable results. The successful development of this method also provides reliable prospects and technical support for the follow-up detection of similar environmental pollutants.
机译:在这项工作中,已经构建了超敏感和简单的化学发光(CL)免疫传感器以检测实际水样中的Hg2 +。基于氧化石墨烯和壳聚糖的优异性质改性新的流动细胞以实现令人满意的结果。氧化石墨烯具有良好的生物相容性,可以有效地固定抗原并构建一种有效的生物传感器界面。壳聚糖具有优异的生物降解性,优异的成膜和生物相容性。因此,氧化的石墨烯 - 壳聚糖复合材料提供了一种用于固定涂层抗原并将HRP标记的二抗引入Luminol-PIP-H2O2的CL反应中的有利的微轴。通过竞争型测定模式,溶液中的HG2 +与用于单克隆抗体的有限结合位点的固定涂层抗原竞争,这导致该系统的CL由于较少的HRP而降低。在最佳条件下,CL信号显示出朝向Hg2 +的良好线性关系,其范围为0.001-300 ng ml(-1),检测限为0.33pg ml(-1)。免疫传感器具有可接受的准确性,高特异性和再现性,并应用于实际水样和乳膏中的HG2 +,具有良好的结果。这种方法的成功发展还为类似环境污染物的后续检测提供了可靠的前景和技术支持。

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