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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Sandwich magnetically imprinted immunosensor for electrochemiluminescence ultrasensing diethylstilbestrol based on enhanced luminescence of Ru@SiO2 by CdTe@ZnS quantum dots
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Sandwich magnetically imprinted immunosensor for electrochemiluminescence ultrasensing diethylstilbestrol based on enhanced luminescence of Ru@SiO2 by CdTe@ZnS quantum dots

机译:基于CDTE @ ZnS量子点的增强发光,夹层用于电化学荧光超细二乙基槲皮素的磁性印迹免疫传感器

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摘要

A molecularly imprinted magnetic sensor with electmluminescent tags (MIP-ECL sensor) was developed for ultrasensing diethylstilbestrol (DES). A strategy is exploited to enhance ECL emission of the [Ru(bpy)(3)](2+)-tripropyl amine (TPrA) system by CdTe@ZnS quantum-dots (QDs) through energy transfer. Magnetically molecularly imprinted nanoparticles (MMIPs NPs) based on Fe3O4@SiO2 carriers are artificial, easily reproducible, and could replace easily inactivated first antibodies for capturing more DES molecules. Functionalized bio-conjugates of single antibody-CdTe@ZnS (Ab-CdTe@ZnS) are for the first time loaded on signal labels of Ru(bpy) +-doped silica nanocomposites (Ru@SiO2) for signal amplification. The final bio-conjugated signal probes are denoted as Ab-DES/CdTe@ZnS-Ru@SiO2. MMIPs beads that have captured antigens are bio-conjugated with antibodylabeled luminescent probes by specific immunoreactive reaction, and then the luminescent immunocomplex generates ECL signal on the magnetic electrode. The logarithm of ECL intensities depend linearly on the logarithm of DES concentrations in the range from 4.8 x 10(-)(4) to 36.0 nM with a detection limit of 0.025 pM. This novel assay is much more sensitive than other MIP sensors, and achieves lower cost and more enhanced stability than other immunosensors. The sensor is significantly potential and has been applied to DES detection in actual environment.
机译:为超胶质二乙基胱螺旋(DES)开发了具有选定标签(MIP-ECL传感器)的分子印迹磁传感器。利用一种策略来增强通过能量转移通过CDTE @ ZnS量子点(QDS)的[Ru(BPY)(3)(3)](2 +) - 三丙胺(TPRA)系统的ECL发射。基于Fe3O4携带者的磁性分子印迹纳米颗粒(MMIPS NPS)是人造的,容易再现的,并且可以易于易于灭活的第一抗体来捕获更多的DES分子。单抗体-CDTE @ ZnS(AB-CDTE @ ZnS)的官能化生物缀合物是第一次加载Ru(BPY)+掺杂的二氧化硅纳米复合材料(Ru @ SiO2)的信号标签,用于信号放大。最终的生物共轭信号探针表示为AB-DES / CDTE @ ZnS-Ru @ SiO2。捕获抗原的MMIPS珠粒通过特异性免疫反应与抗体标记的发光探针进行生物缀合,然后发光免疫弹性在磁极上产生ECL信号。 ECL强度的对数依赖于4.8×10( - )(4)至36.0nm的DES浓度的对数,检测限为0.025μm。这种新的测定比其他壁传感器更敏感,并且达到比其他免疫传感器更低的成本和更高的稳定性。传感器显着潜力,并且已应用于实际环境中的DES检测。

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