Key Laboratory for Analytical Science of Food Safety and Biology (MOE & Fujian Province), Department of Chemistry, Fuzhou University, Fuzhou, 350108, PR China.
Key Laboratory for Analytical Science of Food Safety and Biology (MOE & Fujian Province), Department of Chemistry, Fuzhou University, Fuzhou, 350108, PR China.
Anal Chim Acta. 2023 Apr 29;1252:341058. doi: 10.1016/j.aca.2023.341058. Epub 2023 Mar 8.
A Fe-loaded BiOS nanosheet photoanode serving as photoelectric biomonitoring platform for the detection of prostate-specific antigen (PSA) using biologically inspired prussian nanoparticle (PB)-catalyzed biocatalytic precipitation strategy was developed. Primarily, the signal probe PB-mAb obtained by electrostatic adsorption was immobilized on a microplate in the presence of target PSA, and 4-chloro-1-naphthol (4-CN) was oxidized to benzo-4-chloro-hexadienone (4-CD) with the assistance of exogenous hydrogen peroxide, which was generated by a large number of hydroxyl radicals catalyzed by PB. The generated 4-CD showed strongly low conductivity characteristics to burst the photocurrent of highly photoactive Fe-BiOS photoanode. The split incubation reaction could be suitable for high volume and low-cost rapid detection. A dynamic response range of 0.1-100 ng mL with a limit of detection of 34.2 pg mL was achieved with the sensor based on a photoelectric sensing platform and a biomimetic catalytic precipitation reaction. Equally important, the sensor also showed good potential in the detection of real samples compared to commercially available ELISA kits. In conclusion, this work provides a fresh scheme for the development of sensitive biosensors through a bio-inspired catalytic strategy of versatility and a photoanode coupling with high photoelectric activity.
采用受生物启发的普鲁士纳米粒子(PB)催化生物催化沉淀策略,开发了一种负载 Fe 的 BiOS 纳米片光阳极作为光电生物监测平台,用于检测前列腺特异性抗原(PSA)。首先,通过静电吸附将信号探针 PB-mAb 固定在存在目标 PSA 的微孔板上,并且在大量 PB 催化的羟基自由基的作用下,外源过氧化氢将 4-氯-1-萘酚(4-CN)氧化为苯并-4-氯-己二烯酮(4-CD)。生成的 4-CD 表现出强烈的低导电性特征,从而破坏高光电活性 Fe-BiOS 光阳极的光电流。分裂孵育反应可适用于大容量和低成本的快速检测。基于光电传感平台和仿生催化沉淀反应的传感器实现了 0.1-100ng mL 的动态响应范围,检测限为 34.2pg mL。同样重要的是,与市售 ELISA 试剂盒相比,该传感器在实际样品检测中也显示出良好的潜力。总之,这项工作通过多功能的仿生催化策略和与高光电流的光阳极的耦合,为开发灵敏的生物传感器提供了一个新的方案。