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 >A sensitive immunosensor via in situ enzymatically generating efficient quencher for electrochemiluminescence of iridium complexes doped SiO2 nanoparticles
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A sensitive immunosensor via in situ enzymatically generating efficient quencher for electrochemiluminescence of iridium complexes doped SiO2 nanoparticles

机译:通过原位敏感的免疫传感器酶促产生高效猝灭剂,用于铱络合物掺杂SiO2纳米颗粒的电化学升

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摘要

A sensitive electrochemiluminescent (ECL) sandwich immunosensor was proposed herein based on the tris (2-phenylpyridine) iridium [Ir(ppY)(3)] doped silica nanoparticles (SiO2@Ir) with improved ECL emission as signal probes and glucose oxidase (GOD)-based in situ enzymatic reaction to generate H2O2 for efficiently quenching the ECL emission of SiO2@Ir. Typically, the SiO2@Ir not only increased the loading amount of Ir(ppy)3 as ECL indicators with high ECL emission, but also improved their water-solubility, which efficiently enhanced the ECL emission. Furthermore, by the efficient quench effect of H2O2 from in situ glucose oxidase (GOD) -based enzymatic reaction on the ECL emission of SiO2@Ir, a signal-off ECL immunsensor could be established for sensitive assay. With N-terminal of the prohormone brain natriuretic peptide (BNPT) as a model, the proposed ECL assay performed high sensitivity and low detection limit. Importantly, the proposed sensitive ECL strategy was not only suitable for the detection of BNPT for acute myocardial infarction, but also revealed a new avenue for early diagnosis of various diseases via proteins, nucleotide sequence, microRNA and cells.
机译:在此基于Tris(2-苯基吡啶)铱[IR(PPY)(3)]掺杂的二氧化硅纳米颗粒(SiO 2 @ IR),提出了一种敏感的电化学液(ECL)夹层免疫传感器,其具有改善的ECL发射作为信号探针和葡萄糖氧化酶(GOD - 基于原位酶促反应以产生H 2 O 2,以便有效地淬灭SiO2 @ IR的ECL排放。通常,SiO2 @ IR不仅将IR(PPY)3的装载量增加为具有高ECL排放的ECL指标,而且还改善了它们的水溶性,从而有效增强了ECL排放。此外,通过对SiO 2 @ IR的ECL排放的基于原位葡萄糖氧化酶(GOD)的酶反应的高效骤冷效应,可以建立用于敏感测定的信号 - OFF eCL免疫传感器。用Prohormone脑Natriuretic肽的N-末端作为模型,所提出的ECL测定进行高灵敏度和低检测限。重要的是,建议的敏感的ECL策略不仅适用于检测急性心肌梗死的BNPT,而且还揭示了通过蛋白质,核苷酸序列,微稻草和细胞早期诊断各种疾病的新途径。

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