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3O 4@Au nanoparticles-assembled Ru@SiO 2 nanocomposites combined with multiple cycling amplification strategy]]>

机译:<![CDATA [CDATA [CAEASCEA的CEA电化学发光检测基于磁FE 3 O 4 @ Au纳米粒子组装ru @ sio 2 纳米复合材料结合多循环扩增策略]]]>

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摘要

In this work, we designed a new strategy for ultrasensitive detection of CEA based on efficient electrochemiluminescence (ECL) quenching of Ru(bpy)32+-doped SiO2nanocomposite by ferrocene using target recycling amplification technique. A large number of Ru@SiO2ECL signal probe were firstly assembled on the novel magnetic core?shell Fe3O4@Au nanoparticles (NPs), then the ferrocene-labeled ECL quenching probe (Fc-probe) was linked to the magnetic NPs. Finally, numerous DNA1 sequences were produced by target CEA-triggered multiple recycling amplification and displaced the Fc-probe on the magnetic NPs, leading to significantly enhanced ECL signal for CEA detection. Because of the designed cascade signal amplification strategy, the newly developed method achieved a wide linear range of 10?fg/mL to 10?ng/mL with a ?low detection limit of ? 3.5?fg/mL. Furthermore, taking advantages of the magnetic Fe3O4@Au NPs for carring abundant signal probes, sensing target and ECL detection, the developed ECL strategy is convenient, rapid and displayed high sensitivity for CEA detection, which has great potential for analyzing the clinical samples in practical disease diagnosis applications.
机译:在这项工作中,我们设计了一种基于Ru(BPY)32 + -Doped SiO2Nanocith的高效电化学发光(ECL)猝灭的CEA超细敏感检测的新策略。首先在新型磁芯上组装大量Ru @ SiO 2Cl信号探针α壳Fe3O4α纳米颗粒(NPS),然后将二茂铁标记的ECL猝灭探针(Fc-探针)连接到磁NPS。最后,通过靶CEA-触发的多重再循环扩增产生了许多DNA1序列,并在磁NPS上移位Fc探针,导致显着增强了CEA检测的ECL信号。由于设计的级联信号放大策略,新开发的方法达到了宽的线性范围为10?FG / ml至10≤ng/ ml,检测极限为? 3.5?FG / ml。此外,采用磁FE3O4 @ Au NPS的优点,用于载有丰富的信号探针,感测目标和ECL检测,开发的ECL策略是方便,快速,对CEA检测的高灵敏度,这具有很大的潜力,可以在实际分析临床样品疾病诊断应用。

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