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量子材料辅助的非酶级联放大用于超灵敏光电化学DNA传感。

Quantum material accompanied nonenzymatic cascade amplification for ultrasensitive photoelectrochemical DNA sensing.

作者信息

Wen Guangming, Yang Xiaojie, Wang Yongzhao

机构信息

School of Chemistry and Chemical Engineering, Shanxi University, Taiyuan 030006, P. R. China.

出版信息

J Mater Chem B. 2017 Oct 7;5(37):7775-7780. doi: 10.1039/c7tb01846k. Epub 2017 Sep 20.

Abstract

A novel cascade photoelectrochemical (PEC) signal amplification sensing strategy was designed and applied in target DNA detection by introducing quantum dots (QD) as the accompanying tag. The CdTe QD was labeled onto a designed sequence of single stranded DNA forming S-QD, which could be further hybridized with another magnetic bead labeled conjugate, leading to a metastable structure. In the presence of the detecting target, the S-QD could be released from the metastable structure via toehold strand displacement. With the help of the designed strand (H), the target could be released and triggered the cascade amplification. In the magnetic field, the S-QD could be easily separated from the reaction mixture and coated on the F-doped tin oxide (FTO) electrode leading to the "signal on" PEC response. The designed cascade amplification photoelectrochemical strategy exhibited a detection limit of 0.76 pM target DNA, and a linear range from 1 pM to 50 nM, indicating promising application in DNA or related analysis. Moreover, compared with other tags such as fluorescent dye, the quantum material leads to less unspecific adsorption and better sensing reproducibility, due to the appropriate nano size and high quantum efficiency.

摘要

通过引入量子点(QD)作为伴随标签,设计了一种新型级联光电化学(PEC)信号放大传感策略并将其应用于目标DNA检测。碲化镉量子点标记在单链DNA的设计序列上形成S-QD,其可进一步与另一种磁珠标记的共轭物杂交,形成亚稳结构。在检测目标存在的情况下,S-QD可通过链置换从亚稳结构中释放出来。借助设计的链(H),目标可被释放并触发级联放大。在磁场中,S-QD可轻松从反应混合物中分离出来并涂覆在氟掺杂氧化锡(FTO)电极上,导致“信号开启”的PEC响应。所设计的级联放大光电化学策略对目标DNA的检测限为0.76 pM,线性范围为1 pM至50 nM,表明其在DNA或相关分析中具有广阔的应用前景。此外,与荧光染料等其他标签相比,由于合适的纳米尺寸和高量子效率,量子材料导致更少的非特异性吸附和更好的传感重现性。

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