Key Laboratory for Analytical Science of Food Safety and Biology (MOE & Fujian Province), State Key Laboratory of Photocatalysis on Energy and Environment, Department of Chemistry , Fuzhou University , Fuzhou 350116 , People's Republic of China.
Liver Disease Center, The First Affiliated Hospital , Fujian Medical University , Fuzhou 350005 , People's Republic of China.
Anal Chem. 2018 Jun 5;90(11):7086-7093. doi: 10.1021/acs.analchem.8b01825. Epub 2018 May 25.
A new double photosystems-based 'Z-scheme' photoelectrochemical (PEC) sensing platform is designed for ultrasensitive detection of prostate-specific antigen (PSA) by coupling with a three-dimensional (3D) DNA walker. Two photosystems consist of CdS quantum dots (photosystem I; PS I) and BiVO photoactive materials (photosystem II; PS II), whereas gold nanoparticles (AuNPs) photodeposited on high-active {010} facets of BiVO are used as the electron mediators to promote electron transfer from conduction band of PS II to valence band of PS I. 3D DNA walker-based amplification strategy is carried out between hairpin DNA1 conjugated onto the AuNP, hairpin DNA2 labeled with CdS quantum dot (QD-H2), and DNA walker complementary with the PSA aptamer modified to a magnetic bead (Apt-MB). Upon addition of target, DNA walker strand is displaced from DNA walker/Apt-MB to open hairpin DNA1 on AuNP@BiVO. In the presence of QD-H2, DNA walker induces the hybridization of DNA1 with DNA2 on the gold nanoparticles step by step, thereby resulting in the assembly of CdS QDs on the AuNP@BiVO to form Z-scheme double photosystems with strong photocurrent. Under optimum conditions, the Z-scheme PEC sensing system exhibits good photocurrent responses toward target PSA within the working range of 0.01-50 ng mL at a low detection limit of 1.5 pg mL. Good reproducibility and accuracy are acquired for analysis of target PSA and human serum specimens relative to the commercial PSA ELISA kit. Importantly, our strategy provides a new horizon for photoelectrochemical in vitro diagnostics.
一种新的基于双光系统的“Z 型”光电化学(PEC)传感平台,通过与三维(3D)DNA walker 偶联,用于超灵敏检测前列腺特异性抗原(PSA)。两个光系统由 CdS 量子点(光系统 I;PSI)和 BiVO 光活性材料(光系统 II;PS II)组成,而在 BiVO 的高活性{010}面上光沉积的金纳米粒子(AuNPs)用作电子介体,以促进电子从 PS II 的导带转移到 PS I 的价带。在与 AuNP 共轭的发夹 DNA1、标记有 CdS 量子点(QD-H2)的发夹 DNA2 和与修饰到磁珠上的 PSA 适体互补的 DNA walker 之间,进行基于 3D DNA walker 的放大策略。加入靶标后,DNA walker 从 AuNP@BiVO 上的 DNA walker/Apt-MB 中置换出来。在 QD-H2 的存在下,DNA walker 一步一步地诱导 DNA1 与 AuNP 上的 DNA2 杂交,从而导致 CdS QDs 在 AuNP@BiVO 上的组装,形成具有强光电流的 Z 型双光系统。在最佳条件下,Z 型 PEC 传感系统对工作范围内 0.01-50ng/mL 的目标 PSA 表现出良好的光电流响应,检测限低至 1.5pg/mL。与商业 PSA ELISA 试剂盒相比,该方法对目标 PSA 和人血清标本的分析具有良好的重现性和准确性。重要的是,我们的策略为光电化学体外诊断提供了新的前景。