Verdian Asma, Rouhbakhsh Zeinab, Fooladi Ebrahim
Department of Food Safety and Quality Control, Research Institute of Food Science and Technology (RIFST), Mashhad, Iran.
Department of Food Safety and Quality Control, Research Institute of Food Science and Technology (RIFST), Mashhad, Iran.
J Hazard Mater. 2021 Jan 15;402:123531. doi: 10.1016/j.jhazmat.2020.123531. Epub 2020 Jul 23.
Polychlorinated biphenyls (PCBs) are considered persistent bio-accumulative toxicants which threats global food safety and environmental health. Traditional analytical techniques for detection of PCBs are time-consuming and they do not satisfy urgent need for rapid and accurate monitoring of these persistent pollutants. Biosensor technology may be promising in this respect. Here we demonstrate a novel liquid crystal (LC)-based aptasensing platform as a promising label-free and rapid biosensor for PCB77 detection. This novel molecular strategy utilize triple-helix molecular conformational switch which is mediated formation of duplex on sensing platform in presence of target. Duplex forming leads to optical change from dark to bright in a liquid crystal based aptasensor. The limit of quantification of the LC-aptasensor to PCB77 is 1.5 × 10 μg/L with comparable selectivity. Besides, we also demonstrated that this system is able to detect PCB77 in tap water, environmental water and milk. This strategy has potential for label-free and portable detection of different targets without any aptamer sequence length restrictions.
多氯联苯(PCBs)被认为是持久性生物累积性毒物,威胁着全球食品安全和环境健康。传统的多氯联苯检测分析技术耗时较长,无法满足对这些持久性污染物进行快速准确监测的迫切需求。生物传感器技术在这方面可能具有广阔前景。在此,我们展示了一种基于新型液晶(LC)的适体传感平台,作为一种有前景的用于检测多氯联苯77(PCB77)的无标记快速生物传感器。这种新型分子策略利用三螺旋分子构象开关,在目标物存在时,该开关介导在传感平台上形成双链体。双链体的形成会导致基于液晶的适体传感器发生从暗到亮的光学变化。该液晶适体传感器对PCB77的定量限为1.5×10 μg/L,具有相当的选择性。此外,我们还证明了该系统能够检测自来水中、环境水体和牛奶中的PCB77。这种策略具有无标记和便携式检测不同目标物的潜力,且不受任何适体序列长度的限制。