A “turn-off” SERS aptasensor based DNAzyme-gold nanorod for ultrasensitive lead ion detection

IF 2.5 Q1 Chemistry Analytica Chimica Acta: X Pub Date : 2019-07-01 DOI:10.1016/j.acax.2019.100020
Wei Xu , Aiwu Zhao , Fangtao Zuo , Hafiz Muhammad Jafar Hussain , Ranjha Khan
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引用次数: 10

Abstract

It is great significance to precisely monitor lead (II) ions (Pb2+) for environment protection and human health monitoring. We designed a sensitive detection strategy for sensitive and selective determination of Pb2+, based on a Pb2+-specific DNAzyme as the catalytic unit, Cy3-labeled DNA modified gold nanorods (AuNRs) as SERS reporter. Firstly, AuNRs surface were employed as a platform for the immobilization of thiolated probe DNA, and then hybridized with DNAzyme catalytic beacons. By taking advantage of DNAzyme digest, a molecular beacon, causes a “turn-off” SERS signal by disrupting the labeled probes. Under the optical conditions, the DNAzyme-AuNRs sensor system exhibited high sensitivity, acceptable stability and reproducibility with a wide linear range from 0.5 to 100 nM (R2 = 0.9973), and an ultra-low detection limit of 0.01 nM. The proposed strategy has additional advantages of being less time-consuming, low-cost and remote query, and avoids the interference of some metals such as Fe3+, Cd2+, Ba2+, Cu2+, Zn2+. The SERS biosensor system has been successfully applied for detecting Pb2+ in real samples with a satisfactory result. The result indicated that the proposed sensing strategy not only enriches SERS platform of monitoring Pb2+ but also exhibits potential for the point-of-care diagnostic application of the clinical screening in complicated biological samples.

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一种用于超灵敏铅离子检测的基于DNAzyme-gold纳米棒的“关闭”SERS容体传感器
精确监测铅(II)离子(Pb2+)对环境保护和人体健康监测具有重要意义。我们设计了一种基于Pb2+特异性DNAzyme作为催化单元,cy3标记的DNA修饰金纳米棒(aunr)作为SERS报告因子的灵敏和选择性检测Pb2+的灵敏检测策略。首先,利用aunr表面作为固定化探针DNA的平台,然后与DNAzyme催化信标进行杂交。通过利用DNAzyme消化,一种分子信标,通过破坏标记探针导致“关闭”SERS信号。在光学条件下,DNAzyme-AuNRs传感器系统灵敏度高,稳定性好,重现性好,线性范围为0.5 ~ 100 nM (R2 = 0.9973),超低检出限为0.01 nM。该方法具有时间短、成本低、远程查询等优点,避免了Fe3+、Cd2+、Ba2+、Cu2+、Zn2+等金属的干扰。SERS生物传感器系统已成功应用于实际样品中Pb2+的检测,并取得了满意的结果。结果表明,所提出的传感策略不仅丰富了监测Pb2+的SERS平台,而且在复杂生物样品的临床筛选中具有护理点诊断应用潜力。
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来源期刊
Analytica Chimica Acta: X
Analytica Chimica Acta: X Chemistry-Analytical Chemistry
自引率
0.00%
发文量
3
审稿时长
16 weeks
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