首页> 外文期刊>Analytical chemistry >Self-Enhanced Electrochemiluminescence Nanorods of Tris(bipyridine) Ruthenium(II) Derivative and Its Sensing Application for Detection of N-Acetyl-beta-D-glucosaminidase
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Self-Enhanced Electrochemiluminescence Nanorods of Tris(bipyridine) Ruthenium(II) Derivative and Its Sensing Application for Detection of N-Acetyl-beta-D-glucosaminidase

机译:三(联吡啶)钌(II)衍生物的自增强电化学发光纳米棒及其在检测N-乙酰-β-D-氨基葡萄糖苷酶中的传感应用

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摘要

A self-enhanced electrochemiluminescence (ECL) reagent, synthesized by covalently linking bis(2,2'-bipyridyl) (4'-methyl- [2,2']bipyridinyl-4-carboxylicacid) ruthenium(II) (Ru(bpy)(2)(mcbpy)(2+)) with tris(3-aminopropyl)amine (TAPA), has been chosen as precursor to prepare nanorods ([Ru(bpy)(2)(mcbpy)(2+)-TAPAThIRs) with high luminous efficiency via a solvent-evaporation-induced self-assembly procedure. Due to the shorter electron-transfer path and less energy loss, the intramolecular reaction between the luminescent Ru(bpy)(2)(mcbpy)(2+) and coreactive tertiary amine group in TAPA has shown improved luminous efficiency compared with the common intermolecular ECL reactions. Moreover, using the electrochemiluminescent Ru(II)-based complex as precursor to directly prepare a nanostructure with high electro-active surface area is a more effective and convenient method for enhancing the immobilized amount of Ru(II)-based complex in the construction of biosensors compared with the traditional immobilized methods. Meanwhile, the obtained nanorods could be further functionalized easily, owing to their positive electrical property and the amino group on the surface. Here, Pt nanoparticles functionalized [Ru(bpy)(2)(mcbpy)(2+)-TAPARTRs are used to load the detection antibody (Ab(2)). In addition, the Au/Pd dendrimers (DRs) with hierarchically branched structures are synthesized to immobilize capture antibody (Ab(1)) with increased amount. Based on sandwiched immunoreactions, a simple and sensitive "signal-on" immunosensor is constructed for the detection of N-acetyl-beta-D-glucosaminidase (NAG), a biomarker of diabetic nephropathy, with excellent linearity in concentrations from 1 ng mL(-1) to 0.5 pg mL(-1) and a detection limit of 0.17 pg mL(-1).
机译:通过共价连接双(2,2'-联吡啶基)(4'-甲基-[2,2']联吡啶基-4-羧酸)钌(II)(Ru(bpy))合成的自增强电化学发光(ECL)试剂具有三(3-氨基丙基)胺(TAPA)的(2)(mcbpy)(2+))已被选作制备纳米棒的前体([Ru(bpy)(2)(mcbpy)(2 +)-TAPAThIRs通过溶剂蒸发诱导的自组装程序获得高发光效率。由于较短的电子传输路径和较少的能量损失,与常见的分子间分子相比,TAPA中的发光Ru(bpy)(2)(mcbpy)(2+)和共反应性叔胺基团之间的分子内反应已显示出提高的发光效率。 ECL反应。此外,使用电化学发光的Ru(II)基络合物作为前驱体直接制备具有高电活性表面积的纳米结构是一种更有效,更方便的方法,用于提高Ru(II)基络合物的固定化量。生物传感器与传统的固定方法相比。同时,由于它们的正电特性和表面上的氨基,所得到的纳米棒可以容易地进一步官能化。在这里,功能化的铂纳米粒子[Ru(bpy)(2)(mcbpy)(2 +)-TAPAR TRs用于加载检测抗体(Ab(2))。此外,具有分层分支结构的Au / Pd树状聚合物(DRs)可以固定化捕获抗体(Ab(1))的量。基于夹心式免疫反应,构建了一种简单而灵敏的“信号开启”免疫传感器,用于检测糖尿病性肾病的生物标记物N-乙酰-β-D-氨基葡萄糖苷酶(NAG),浓度线性良好,浓度范围从1 ng mL( -1)至0.5 pg mL(-1)的检出限。

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