首页> 外文期刊>Analytical chemistry >Quenching of the Electrochemiluminescence of Tris(2,2'-bipyridine)ruthenium(II)/Tri-n-propylamine by Pristine Carbon Nanotube and Its Application to Quantitative Detection of DNA
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Quenching of the Electrochemiluminescence of Tris(2,2'-bipyridine)ruthenium(II)/Tri-n-propylamine by Pristine Carbon Nanotube and Its Application to Quantitative Detection of DNA

机译:碳纳米管对三(2,2'-联吡啶)钌(II)/三正丙胺的电化学发光猝灭及其在DNA定量检测中的应用

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摘要

In this study, we describe the quenching of electrochemiluminescence (ECL) of tris(2,2'-bipyridine)-ruthenium(II)(Ru-(bpy)_3~(2+))/tri-n-propylamine(TPA) at pristine multiwall carbon nanotube (MWNT) modified glassy carbon (GC) electrode. Even though the faradic current of the Ru(bpy)_3~(2+)/TPA system and the oxidation of TPA obtained at pristine MWNT-modified GC electrode is enhanced compared with those at the bare GC electrode, the intensity of ECL produced at MWNT electrode is smaller than that at GC electrode. For testing the possible reason of quenching, a comparison of ECL behavior of Ru(bpy)_3~(2+)/TPA at pristine MWNT and acid-treated, heat-treated, and polyethylene glycol (PEG)-wrapped MWNT-modified GC electrode is studied. The results demonstrate that the oxygen-containing groups at the surface of MWNT and the intrinsic electron properties of MWNT are considered to be the major reason for the suppression of ECL. The comparison also demonstrates that this quenching is related to the distance between MWNT and Ru(bpy)_3~(2+)/TPA. Utilizing this essential quenching mechanism, a new signal-on DNA hybridization assay is proposed on the basis of the MWNT modified electrode, where single-stranded DNA (ssDNA) labeled with Ru(bpy)_3~(2+) derivatives probe (Ru-ssDNA) at the distal end is covalently attached onto the MWNT electrode. ECL signal is quenched where Ru-ssDNA is self-organized on the surface of MWNT electrode; however, the quenched ECL signal returns in case of the presence of complementary ssDNA. The developed approach for sequence-specific DNA detection has good selectivity, sensitivity, and signal-to-background ratio. Therefore, the quenching of the ECL of Ru(bpy)_3~(2+)/TPA system by the pristine MWNT can be an excellent platform for nucleic acid studies and molecular sensing.
机译:在这项研究中,我们描述了三(2,2'-联吡啶)-钌(II)(Ru-(bpy)_3〜(2 +))/三正丙胺(TPA)的电化学发光(ECL)的猝灭在原始的多壁碳纳米管(MWNT)修饰的玻碳(GC)电极上。尽管与裸GC电极相比,Ru(bpy)_3〜(2 +)/ TPA系统的法拉第电流和在原始MWNT修饰的GC电极上获得的TPA的氧化均得到增强,但在裸露的GC电极上产生的ECL的强度MWNT电极比GC电极小。为了测试淬灭的可能原因,比较了Ru(bpy)_3〜(2 +)/ TPA在原始MWNT以及酸处理,热处理和聚乙二醇(PEG)包裹的MWNT改性GC的ECL行为电极的研究。结果表明,MWNT表面的含氧基团和MWNT的固有电子性质被认为是抑制ECL的主要原因。比较还表明,这种猝灭与MWNT和Ru(bpy)_3〜(2 +)/ TPA之间的距离有关。利用这种基本的猝灭机制,在MWNT修饰电极的基础上,提出了一种新的信号DNA杂交测定方法,其中用Ru(bpy)_3〜(2+)衍生物探针(Ru- ssDNA)远端共价连接到MWNT电极上。 ECL信号被淬灭,其中MWNT电极表面上Ru-ssDNA自组织。但是,如果存在互补的ssDNA,则淬灭的ECL信号会返回。用于序列特异性DNA检测的已开发方法具有良好的选择性,灵敏度和信噪比。因此,用原始的MWNT淬灭Ru(bpy)_3〜(2 +)/ TPA体系的ECL可以为核酸研究和分子传感提供一个极好的平台。

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