School of Chemistry and Chemical Engineering, Yancheng Institute of Technology, Yancheng 224051, P. R. China.
Anal Chem. 2021 Jan 26;93(3):1764-1770. doi: 10.1021/acs.analchem.0c04521. Epub 2020 Dec 29.
Organic dyes are typically applied as photosensitizers in photoelectrochemical (PEC) cells but have not been reported in polarity-reversal-mode PEC sensors with excellent sensitivity and accuracy. Herein, an elegant and robust PEC biosensor for carcinoembryonic antigen (CEA) has been designed by photocurrent polarity switching of CdTe quantum dots (QDs), which is obtained by embedding methylene blue (MB) into amplified double-stranded DNA (dsDNA) anchored to the superparamagnetic FeO@SiO. The target-triggered Exo III-assisted cyclic amplification strategy and in situ magnetic enrichment enable the remarkable sensitivity. The extraction of target-analogue single-stranded DNA (output DNA) contributes to high selectivity resulting from the elimination of possible interferences in real samples or matrixes. Particularly, this exclusive polarity-reversal-mode PEC aptasensing can efficiently eliminate the false-positive or false-negative signals, leading to accurate measurements. Moreover, different from the probes and layer-by-layer assembled photoelectric beacons on electrodes in advance, this rational split-type approach is doomed to help the PEC biosensor with additional merits of convenient fabrication, short time consumption, wider linearity, as well as outstanding reproducibility and stability in practical applications. In light of the ability of MB acting as a kind of signal probe in typical electrochemical sensors, certainly, this ingenious design can not only be extended to a wide variety of target monitoring but also provide new ideas for the construction of high-performance electrochemical and PEC biosensors.
有机染料通常作为光电化学 (PEC) 电池中的光敏剂使用,但在具有出色灵敏度和准确性的极性反转模式 PEC 传感器中尚未报道。在此,通过嵌入到锚定在超顺磁 FeO@SiO 上的放大双链 DNA (dsDNA) 中的亚甲蓝 (MB),设计了一种用于癌胚抗原 (CEA) 的优雅而稳健的 PEC 生物传感器。CdTe 量子点 (QD) 的光电流极性切换实现了目标触发的 Exo III 辅助循环扩增策略和原位磁富集,从而实现了出色的灵敏度。目标模拟单链 DNA(输出 DNA)的提取有助于高选择性,因为可以消除真实样品或基质中可能存在的干扰。特别地,这种独特的极性反转模式 PEC 适体感应可以有效地消除假阳性或假阴性信号,从而实现准确的测量。此外,与预先在电极上的探针和层层组装的光电信标不同,这种合理的分体式方法注定会有助于PEC 生物传感器具有额外的优点,例如制造方便、耗时短、线性范围宽以及在实际应用中具有出色的重现性和稳定性。鉴于 MB 在典型电化学传感器中作为信号探针的能力,这种巧妙的设计不仅可以扩展到各种目标监测,还为构建高性能电化学和 PEC 生物传感器提供了新的思路。