Department of Materials, Imperial College London, London, United Kingdom.
Anal Chem. 2012 Jul 17;84(14):5876-84. doi: 10.1021/ac203403d. Epub 2012 Jun 28.
We report a novel fluorescence-based immunoassay which enables qualitative detection of the Staphylococcus aureus Thermonuclease (TNase) enzyme, thus providing confirmation of the presence of the S. aureus bacterium in vitro. The biomedical problem of chronic wound healing and the continuing emergence of antibiotic-resistant species is addressed in the development of a detection system capable of the rapid, real-time assessment of bacterial load and diversity. The use of bispecific antibodies (BsAb) provides integration of the molecular detection and signal response components of a standard immunoassay due to steric hindrance-mediated release of prebound fluorescent reporter molecules upon specific binding of TNase to adjacent sites. Rhodamine and fluorescein-labeled hemocyanin from Megathura crenulata (KLH) were prepared as effective immunoconjugates containing a sensitive fluorescent reporter moiety. BsAb that both specifically quenched the fluorescence of the reporter conjugate and bound the TNase target antigen were produced using cell fusion techniques. Assays were then performed to analyze the properties attributable to the steric hindrance-mediated release of the fluorescent reporter molecules upon adjacent TNase binding. This was performed by monitoring the intensity of fluorescence emission of the immunogenic reporter conjugate released into an aqueous environment at 578 and 520 nm, respectively.
我们报告了一种新型荧光免疫分析方法,可定性检测金黄色葡萄球菌热核酸酶(TNase)酶,从而确认体外存在金黄色葡萄球菌。生物医学上慢性伤口愈合的问题以及抗生素耐药性物种的持续出现,促使我们开发了一种能够快速、实时评估细菌负荷和多样性的检测系统。由于立体障碍介导的特异性结合 TNase 到相邻位点时预结合荧光报告分子的释放,双特异性抗体(BsAb)的使用提供了分子检测和标准免疫分析信号响应组件的集成。来自巨螯蟹(KLH)的罗丹明和荧光素标记的血蓝蛋白被制备成含有敏感荧光报告部分的有效免疫缀合物。使用细胞融合技术生产了既特异性猝灭报告缀合物荧光又结合 TNase 靶抗原的 BsAb。然后进行了分析,以研究立体障碍介导的荧光报告分子在相邻 TNase 结合时释放的特性。这是通过监测在 578nm 和 520nm 处分别释放到水性环境中的免疫原性报告缀合物的荧光发射强度来完成的。