Key Laboratory of Modern Agricultural Equipment and Technology (Jiangsu University), Ministry of Education, School of Agricultural Engineering, Jiangsu University, Zhenjiang 212013, Jiangsu, China.
Key Laboratory of Modern Agricultural Equipment and Technology (Jiangsu University), Ministry of Education, School of Agricultural Engineering, Jiangsu University, Zhenjiang 212013, Jiangsu, China.
J Hazard Mater. 2023 Jan 5;441:129759. doi: 10.1016/j.jhazmat.2022.129759. Epub 2022 Aug 10.
Currently, the development of sensitive and visual strategy for Cry1Ab detection, particularly using a switchable dual-mode detection system based on a single component, remains a great challenge. Here, a photoelectrochemical (PEC) and visual dual-mode sensor was designed for Cry1Ab detection based on a proximity hybridization driven multifunctional probe. In the presence of Cry1Ab, specific desorption of the antibody-DNA conjugate was achieved via sufficient proximity hybridization, leading to the selective release of the multifunctional signal probe, i.e., antibody-labeled single-stranded DNA-gold nanoparticles (Ab-S1-AuNPs). The released Ab-S1-AuNPs reduced the photocurrent signal and produced a colored response, thereby achieving PEC and visual dual-mode detection based on a single component. Owing to the different signal generation mechanisms, two independent signals were obtained simultaneously, which provided self-verification to improve reliability and accuracy. Taking advantage of the PEC sensitive detection and visual prediction, the dual-mode sensor achieved efficient detection of the Cry1Ab protein. The developed sensor was successfully used to determine Cry1Ab in corn, wheat, and soil samples with satisfactory results. This method offers a promising biosensing platform for the on-site detection of Cry1Ab protein.
目前,开发用于 Cry1Ab 检测的敏感和可视化策略,特别是使用基于单个组件的可切换双模检测系统,仍然是一个巨大的挑战。在这里,基于近邻杂交驱动的多功能探针,设计了用于 Cry1Ab 检测的光电化学(PEC)和可视化双模传感器。在 Cry1Ab 的存在下,通过充分的近邻杂交实现抗体-DNA 缀合物的特异性解吸,从而选择性释放多功能信号探针,即抗体标记的单链 DNA-金纳米颗粒(Ab-S1-AuNPs)。释放的 Ab-S1-AuNPs 降低了光电流信号并产生了颜色响应,从而实现了基于单个组件的 PEC 和可视化双模检测。由于信号产生机制不同,同时获得了两个独立的信号,这提供了自我验证,以提高可靠性和准确性。利用 PEC 敏感检测和可视化预测,双模传感器实现了对 Cry1Ab 蛋白的高效检测。所开发的传感器成功用于玉米、小麦和土壤样品中 Cry1Ab 的测定,结果令人满意。该方法为现场检测 Cry1Ab 蛋白提供了一种有前途的生物传感平台。