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首页> 外文期刊>Analytical chemistry >Novel Magnetic Fe_(3)O_(4)@CdSe Composite Quantum Dot-Based Electrochemiluminescence Detection of Thrombin by a Multiple DNA Cycle Amplification Strategy
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Novel Magnetic Fe_(3)O_(4)@CdSe Composite Quantum Dot-Based Electrochemiluminescence Detection of Thrombin by a Multiple DNA Cycle Amplification Strategy

机译:多重DNA循环扩增策略的新型磁性Fe_(3)O_(4)@CdSe复合量子点电化学发光检测凝血酶

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摘要

A novel small magnetic electrochemiluminescent Fe_(3)O_(4)@CdSe composite quantum dot (QD) was facilely prepared and successfully applied to sensitive electrochemiluminescence (ECL) detection of thrombin by a multiple DNA cycle amplification strategy for the first time. The as-prepared composite QDs feature intense ECL, excellent magnetism, strong fluorescence, and favorable biocompatibility, which offers promising advantages for ECL biosensing. ECL of the composite QDs was efficiently quenched by gold nanoparticles (NPs). Taking advantages of the unique and attractive ECL and magnetic characteristics of the composite QDs, a novel DNA-amplified detection method based on ECL quenching was thus developed for a sensitive assay of thrombin. More importantly, the DNA devices by cleavage reaction were cycled multiple rounds, which greatly amplified the ECL signal and much improve the detection sensitivity. This flexible biosensing system exhibits not only high sensitivity and specificity but also excellent performance in real human serum assay. The present work opens a promising approach to develop magnetic quantum dot-based amplified ECL bioassays, which has wider potential application with more favorable analytical performances than other ECL reagent-based systems. Moreover, the composite QDs are suitable for long-term fluorescent cellular imaging, which also highlights the promising directions for further development of QD-based in vitro and in vivo imaging materials.
机译:简便地制备了新颖的小磁电化学发光Fe_(3)O_(4)@CdSe复合量子点(QD),并首次通过多重DNA循环扩增策略成功地将其成功应用于凝血酶的灵敏电化学发光(ECL)检测。制备的复合量子点具有强烈的ECL,出色的磁性,强荧光和良好的生物相容性,为ECL生物传感提供了有希望的优势。复合量子点的ECL被金纳米颗粒(NPs)有效淬灭。利用复合QD独特且引人注目的ECL和磁性特征的优势,开发了一种基于ECL猝灭的新型DNA扩增检测方法,用于凝血酶的灵敏测定。更重要的是,通过裂解反应的DNA装置被循环了多个回合,极大地放大了ECL信号并大大提高了检测灵敏度。这种灵活的生物传感系统不仅具有高灵敏度和特异性,而且在真实的人血清检测中也具有出色的性能。本工作为开发基于磁性量子点的扩增ECL生物测定法提供了一种有希望的方法,与其他基于ECL试剂的系统相比,它具有更广泛的潜在应用和更优越的分析性能。此外,复合量子点适用于长期荧光细胞成像,这也突出了进一步开发基于量子点的体外和体内成像材料的有希望的方向。

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