MOE Key Laboratory of Laser Life Science and Institute of Laser Life Science, College of Biophotonics, South China Normal University , Guangzhou 510631, China.
Anal Chem. 2017 Dec 5;89(23):13016-13023. doi: 10.1021/acs.analchem.7b04142. Epub 2017 Nov 20.
Electrochemiluminescence (ECL) has been engineered to perform various tasks in the area of immunoassays and molecular diagnosis. However, there is still substantial potential for developments of ECL assay with high efficiency to achieve trace analysis. Herein, we demonstrate a polymer-amplified ECL assay via construction of linear Ru(bpy)-polymer. This new polymer material compensates for the relatively low ECL intensity from single ECL luminophore and realizes a stable and controllable labeling process. The polymer-amplified ECL assay achieved a remarkable sensitivity of 100 amol. The wide-ranging applications of the polymer-amplified ECL assay for Hepatitis B virus, carcinoembryonic antigen, 16sRNA, and thrombin also demonstrate its superiority. Hence, the polymer-amplified ECL assay possesses the potential to create a new paradigm in amplified ECL assays that could provide outstanding performance for biomedical analysis.
电化学发光(ECL)已被应用于免疫分析和分子诊断领域的各种任务中。然而,为了实现痕量分析,仍有很大的潜力可以进一步开发高效率的 ECL 分析方法。在此,我们通过构建线性 Ru(bpy)-聚合物,展示了一种聚合物放大的 ECL 分析方法。这种新型聚合物材料弥补了单个 ECL 发光体相对较低的 ECL 强度,并实现了稳定可控的标记过程。聚合物放大的 ECL 分析方法实现了 100 amol 的显著灵敏度。聚合物放大的 ECL 分析方法在乙型肝炎病毒、癌胚抗原、16sRNA 和凝血酶等方面的广泛应用也证明了其优越性。因此,聚合物放大的 ECL 分析方法有可能为生物医学分析创造一个新的放大 ECL 分析方法的范例,提供卓越的性能。