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基于杂交链式反应和发光钌(II)配合物与 CdZnTeS 量子点相互作用的信号放大的荧光开启型黏蛋白 1 适体传感器。

A fluorometric turn-on aptasensor for mucin 1 based on signal amplification via a hybridization chain reaction and the interaction between a luminescent ruthenium(II) complex and CdZnTeS quantum dots.

机构信息

Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, People's Republic of China.

出版信息

Mikrochim Acta. 2019 Mar 9;186(4):233. doi: 10.1007/s00604-019-3347-3.

Abstract

A fluorometric method is described for the determination of the tumor biomarker mucin 1 (MUC1). It is based on signal amplification of the hybridization chain reaction (HCR), and the interaction between a luminescent ruthenium(II) complex and CdZnTeS quantum dots (QDs). If MUC1 bind to the biotin-labeled aptamer, it will initiate HCR with hairpins H and H to form a long-range dsDNA. The long nucleic acid chains are then linked on the surface of streptavidin-modified magnetic microparticles (MMPs) through streptavidin-biotin interaction. The luminescent ruthenium(II) complex is then embedded in the long dsDNA linked to the MMPs. Hence, there is little Ru complex in the supernatant after magnetic separation, and the fluorescence of the CdZnTeS QDs (best measured at excitation/emission wavelengths of 350/530 nm) is only slightly quenched. In the absence of target, the fluorescence of the CdZnTeS QDs is strongly quenched. Fluorescence increases linearly in the 0.2-100 ng·mL MUC1 concentration range, and the LOD is 0.13 ng·mL (at S/N = 3). The method was applied to the determination of MUC1 in spiked human serum samples. Graphical abstract A fluorometric turn-on aptasensor for mucin 1 is described that is based on the interaction between a Ru(II) complex and quantum dots (QDs). The detection system includes biotin-labeled aptamer-H, hairpins H and H, streptavidin-modified magnetic microparticles (MMPs), Ru(bpy)(dppx) and CdZnTeS QDs.

摘要

一种荧光法测定肿瘤标志物黏蛋白 1(MUC1)的方法。它基于杂交链式反应(HCR)的信号放大,以及发光钌(II)配合物与碲化镉锌量子点(QDs)之间的相互作用。如果 MUC1 与生物素标记的适体结合,它将启动 HCR,使发夹 H 和 H 形成长链 dsDNA。然后,长核酸链通过链霉亲和素-生物素相互作用连接到链霉亲和素修饰的磁性微球(MMPs)表面。然后,发光钌(II)配合物嵌入与 MMPs 相连的长 dsDNA 中。因此,磁分离后上清液中几乎没有 Ru 配合物,CdZnTeS QDs 的荧光(最佳激发/发射波长为 350/530nm)仅略有猝灭。在没有靶标存在的情况下,CdZnTeS QDs 的荧光强烈猝灭。荧光在 0.2-100ng·mL MUC1 浓度范围内呈线性增加,LOD 为 0.13ng·mL(S/N=3)。该方法用于测定人血清样品中 MUC1 的含量。

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