Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, International Joint Research Center for Photoresponsive Molecules and Materials, School of Chemical and Material Engineering, Jiangnan University, Wuxi, 214122, Jiangsu, China.
Mikrochim Acta. 2020 Oct 19;187(11):615. doi: 10.1007/s00604-020-04593-0.
NIR-emitted ZnGaO:Cr persistent luminescence nanoparticles (ZGC NPs) coated with polydopamine (ZGC@PDA NPs) were designed featuring internal reference and quenching ability. Sr-doped ZnGeO persistent luminescence nanorods (ZGO:Sr NRs) served as detection probes, which exhibited blue emission. The decay times and intensity of luminescence of ZGO:Sr NRs were optimized to acquire desired luminescence properties. An aptamer-guided ratiometric persistent luminescence sensor with the LOD (0.46 pg mL) was established to detect carcinoembryonic antigen (CEA). This developed ratiometric aptasensor based on persistent luminescence nanomaterials (PLMs) does not only use the afterglow properties of nanomaterials to avoid the interference of autofluorescence but also precludes the interference of certain factors in the detection environment on the luminescence intensity due to the introduction of a reference signal, and is suitable for early screening of tumor markers in serum samples. Moreover, the optimization of luminescence properties, especially for luminescence decay times, provides a way for the fabrication of multiple persistent luminescence materials in the application of time-resolved fluorescence technology. Graphical abstract Construction of ZGO:Sr NR- and ZGC@PDA NP-driven ratiometric aptasensor for CEA detection.
基于内滤效应和猝灭作用设计了具有内参和猝灭能力的聚多巴胺(PDA)包覆近红外(NIR)发射的 ZnGaO:Cr 长余辉纳米颗粒(ZGC NPs)(ZGC@PDA NPs)。Sr 掺杂的 ZnGeO 长余辉纳米棒(ZGO:Sr NRs)作为检测探针,呈现蓝色发射。优化了 ZGO:Sr NRs 的荧光衰减时间和强度,以获得理想的发光性能。建立了基于适体引导的比率型长余辉荧光传感器,检测下限(LOD)为 0.46 pg mL,用于检测癌胚抗原(CEA)。该比率型适体传感器基于长余辉纳米材料(PLMs),不仅利用了纳米材料的余晖特性,避免了自发荧光的干扰,而且由于引入了参考信号,还避免了检测环境中某些因素对荧光强度的干扰,适用于血清样本中肿瘤标志物的早期筛查。此外,对发光性能的优化,特别是对发光衰减时间的优化,为基于时间分辨荧光技术的多种长余辉材料的制备提供了一种方法。