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基于 Ce-MOF@Au 和 AuPtRu 纳米复合材料的 TSP-1 检测三金属信号放大适体传感器。

Trimetallic signal amplification aptasensor for TSP-1 detection based on Ce-MOF@Au and AuPtRu nanocomposites.

机构信息

College of Pharmacy, Chongqing Medical University, Chongqing 400016, PR China.

School of Public Health, Chongqing Medical University, Chongqing 400016, PR China.

出版信息

Biosens Bioelectron. 2019 May 1;132:302-309. doi: 10.1016/j.bios.2019.02.054. Epub 2019 Mar 4.

Abstract

In this work, an aptamer was used as the target capturing agent and a trimetallic signal amplification strategy based on Ce-MOF@Au and AuPtRu NPs was demonstrated for the sensitive detection of TSP-1. Herein, the synthesized AuPtRu nanocomposite (AuPtRu NPs) not only acts as the catalyst for catalyzing hydrogen peroxide but also acts as a nanocarrier for capturing the -NH termination single strand DNA (S1) to obtain the signal probe (SP, AuPtRu nanocomposite/S1). Then, SP was efficiently linked into TSP-1 aptamers with the addition of complementary linking strands to form M1 (SP/aptamer). The Ce-MOF@Au nanocomposites were obtained by in situ reduction and used as GCE electrode modification materials. The -NH-modified capture probe (CP) DNA was immobilized on the surface of Ce-MOF@Au nanocomposites for hybridizing SP. In the presence of the target TSP-1, the aptamer recognizes the target and binds strongly so that SP is released from the prepared M1 and then hybridized with CP. When the detection solution contains an electrochemical matrix of HO, AuPtRu NPs can oxidize HO to obtain an enhanced signal. Furthermore, the proposed aptasensor has a very low LOD of 0.13 fg mL TSP-1 in the detection range of 1 fg mL to 10 ng mL. Moreover, the proposed platform also has application implications for other potential targets.

摘要

在这项工作中,采用适体作为靶标捕获剂,并展示了基于 Ce-MOF@Au 和 AuPtRu NPs 的三金属信号放大策略,用于 TSP-1 的灵敏检测。在此,合成的 AuPtRu 纳米复合材料(AuPtRu NPs)不仅可以作为催化过氧化氢的催化剂,还可以作为捕获 -NH 末端单链 DNA(S1)的纳米载体,以获得信号探针(SP,AuPtRu 纳米复合材料/S1)。然后,通过添加互补连接链,SP 被有效地与 TSP-1 适体连接,形成 M1(SP/适体)。Ce-MOF@Au 纳米复合材料通过原位还原获得,并用作 GCE 电极修饰材料。-NH 修饰的捕获探针(CP)DNA 固定在 Ce-MOF@Au 纳米复合材料的表面,用于与 SP 杂交。在存在靶标 TSP-1 的情况下,适体识别靶标并与其强烈结合,从而使 SP 从制备的 M1 中释放出来,然后与 CP 杂交。当检测溶液中含有 HO 的电化学基质时,AuPtRu NPs 可以将 HO 氧化以获得增强的信号。此外,所提出的适体传感器在 1 fg mL 至 10 ng mL 的检测范围内具有非常低的 TSP-1 LOD 值为 0.13 fg mL。此外,该平台还对其他潜在目标具有应用意义。

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