首页> 外文期刊>Analytical chemistry >Dual-Mode Sensing Platform Guided by Intramolecular Electrochemiluminescence of a Ruthenium Complex and Cationic N,N-Bis(2-(trimethylammonium iodide)propylene) Perylene-3,4,9,10-tetracarboxydiimide for Estradiol Assay
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Dual-Mode Sensing Platform Guided by Intramolecular Electrochemiluminescence of a Ruthenium Complex and Cationic N,N-Bis(2-(trimethylammonium iodide)propylene) Perylene-3,4,9,10-tetracarboxydiimide for Estradiol Assay

机译:双模感测平台由钌络合物和阳离子N,N-BIS(2-(三甲基碘化铵)丙烯)Perylene-3,4,9,10-四羧基二酰亚胺用于雌二醇测定的分子络合物和阳离子电化学升

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摘要

Herein, a dual-mode sensing platform using cationic N ,N -bis(2-(trimethylammonium iodide)propylene)perylene-3,4,9,10-tetracarboxydiimide (PDA~(+))-assembled DNA strands as a quencher was suggested for estradiol (E2) detection. The aptamer chain was initially anchored with the Ru(II) novel molecule (Ru complex), which was recombined with carbohydrazide (CON_(4)H_(6)) and tris(4,4′-dicarboxylicacid-2,2′-bipyridyl)ruthenium(II) dichloride [Ru(dcbpy)_(3)~(2+)] modified on copper oxide (CuO) nanospheres. Intramolecular electrochemiluminescence (ECL) occurring between CON_(4)H_(6) and Ru(dcbpy)_(3)~(2+) effectively improved the reaction rate and increased the ECL efficiency. By employing effective van der Waals’ force, PDA~(+) was endowed with an efficient ECL quenching probe on an electrode. The signal on the ECL interface can be converted into quenching because of energy transfer between the intercalator and the emitter. Notably, cationic PDA~(+) possessing a large planar π–π skeleton improved advantageous activity of redox and DNA aptamer indurative loading capacity and directly generated a well-defined cathodic peak to execute the EC bio-detection. This method not only avoids the difficulty of assembling various signal indicators but also improves the sensitivity greatly using the quenching mechanism. In addition, disparate double-response signals coming from different principles of transduction are in a position to verify each other to improve the accuracy. Hence, examination areas of 0.001–100 nM with E2 for ECL and EC were obtained, supplying a novel sensing strategy with promising ideas and perspectives of detection platform construction.
机译:在此,提出了一种双模传感平台,使用阳离子N、N-双(2-(三甲基碘化铵)丙烯)苝-3,4,9,10-四羧基二亚胺(PDA~(+))组装的DNA链作为雌二醇(E2)检测的猝灭剂。适配子链最初由Ru(II)新分子(Ru络合物)锚定,该分子与碳酰肼(CON_4)H_6)和三(4,4′-二羧酸-2,2′-联吡啶)二氯化钌[Ru(dcbpy)3)~(2+)在氧化铜(CuO)纳米球上改性。CON_4)H_6和Ru(dcbpy)3~(2+)之间发生的分子内电化学发光(ECL)有效地提高了反应速率,提高了ECL效率。利用有效范德华力,在电极上为PDA~(+)配备了高效的ECL猝灭探针。由于插层和发射极之间的能量转移,ECL界面上的信号可以转换为猝灭。值得注意的是,具有大平面π–π骨架的阳离子PDA~(+)提高了氧化还原的有利活性和DNA适体的负载能力,并直接产生了一个明确的阴极峰来执行EC生物检测。这种方法不仅避免了装配各种信号指示器的困难,而且利用淬火机制大大提高了灵敏度。此外,来自不同转导原理的不同双反应信号能够相互验证以提高准确性。因此,ECL和EC的E2检测面积为0.001–100 nM,为检测平台建设提供了一种新的传感策略,具有很好的思路和前景。

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  • 来源
    《Analytical chemistry》 |2021年第15期|共6页
  • 作者单位

    Collaborative Innovation Center for Green Chemical Manufacturing and Accurate Detection University of Jinan;

    Collaborative Innovation Center for Green Chemical Manufacturing and Accurate Detection University of Jinan;

    Collaborative Innovation Center for Green Chemical Manufacturing and Accurate Detection University of Jinan;

    Collaborative Innovation Center for Green Chemical Manufacturing and Accurate Detection University of Jinan;

    Collaborative Innovation Center for Green Chemical Manufacturing and Accurate Detection University of Jinan;

    Collaborative Innovation Center for Green Chemical Manufacturing and Accurate Detection University of Jinan;

    Collaborative Innovation Center for Green Chemical Manufacturing and Accurate Detection University of Jinan;

    Collaborative Innovation Center for Green Chemical Manufacturing and Accurate Detection University of Jinan;

    Collaborative Innovation Center for Green Chemical Manufacturing and Accurate Detection University of Jinan;

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  • 正文语种 eng
  • 中图分类 分析化学;
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