Zhang Qingqing, Fu Yamin, Xiao Ke, Du Cuicui, Zhang Xiaohua, Chen Jinhua
State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, P. R. China.
Anal Chem. 2021 May 4;93(17):6801-6807. doi: 10.1021/acs.analchem.1c00746. Epub 2021 Apr 20.
Herein, an electrochemical (EC)-photoelectrochemical (PEC) dual-mode biosensor was constructed for cytokeratin 19 fragment 21-1 (CYFRA21-1) assay based on the dual-signaling electrochemical ratiometric strategy and "on-off-on" PEC method. The indium tin oxide (ITO) electrode was modified by 3,4,9,10-perylenetetracarboxylic dianhydride (PTCDA)@C and gold nanoparticles (Au NPs), and the double-stranded DNA composed of thiol/methylene blue (MB)-labeled single-stranded DNA (ssDNA) (S0-MB) and antibody/ferrocene (Fc)-labeled ssDNA (Ab1-S1-Fc) was immobilized on the Au NPs/PTCDA@C/ITO electrode via the Au-S bond between Au NPs and thiol of S0-MB. With the help of another antibody-labeled ssDNA (Ab2-S2), the presence of CYFRA21-1 triggered a typical antigen-antibody sandwich immune reaction (Ab1, CYFRA21-1, and Ab2) and proximity hybridization between Ab1-S1-Fc and Ab2-S2. This caused the release of Ab1-S1-Fc from the modified electrode and the change of S0-MB to a hairpin structure, resulting in a decrease (an increase) of the oxidation peak current of Fc (MB) and an increase of the photocurrent due to the enhancing (inhibiting) effect of MB (Fc) on the photoelectric performance of the Au NPs/PTCDA@C/ITO electrode. Thus, CYFRA21-1 was detected by the developed EC-PEC dual-mode sensing platform sensitively, and the linear response ranges of 0.001-40 ng/mL with a detection limit of 0.3 pg/mL for the EC technique and 0.0001-4 ng/mL with a detection limit of 0.03 pg/mL for the PEC method were obtained. Furthermore, by changing the specific antibodies of disease-related biomarkers, the developed dual-mode biosensing platform could be readily extended to detect other antigens, implying its great potential applications in biological analysis and early disease diagnosis.
在此,基于双信号电化学比率策略和“开-关-开”光电化学方法构建了一种用于细胞角蛋白19片段21-1(CYFRA21-1)检测的电化学(EC)-光电化学(PEC)双模生物传感器。氧化铟锡(ITO)电极用3,4,9,10-苝四羧酸二酐(PTCDA)@C和金纳米颗粒(Au NPs)进行修饰,由巯基/亚甲蓝(MB)标记的单链DNA(ssDNA)(S0-MB)和抗体/二茂铁(Fc)标记的ssDNA(Ab1-S1-Fc)组成的双链DNA通过Au NPs与S0-MB的巯基之间的Au-S键固定在Au NPs/PTCDA@C/ITO电极上。在另一种抗体标记的ssDNA(Ab2-S2)的帮助下,CYFRA21-1的存在引发了典型的抗原-抗体夹心免疫反应(Ab1、CYFRA21-1和Ab2)以及Ab1-S1-Fc与Ab2-S2之间的邻近杂交。这导致Ab1-S1-Fc从修饰电极上释放,S0-MB转变为发夹结构,导致Fc(MB)的氧化峰电流降低(增加),并且由于MB(Fc)对Au NPs/PTCDA@C/ITO电极光电性能的增强(抑制)作用,光电流增加。因此,通过所开发的EC-PEC双模传感平台灵敏地检测到CYFRA21-1,对于EC技术获得了0.001 - 40 ng/mL的线性响应范围,检测限为0.3 pg/mL,对于PEC方法获得了0.0001 - 4 ng/mL的线性响应范围,检测限为0.03 pg/mL。此外,通过改变疾病相关生物标志物的特异性抗体,所开发的双模生物传感平台可以很容易地扩展到检测其他抗原,这意味着其在生物分析和疾病早期诊断中具有巨大的潜在应用。