Department of Biomedical Engineering, Dongguk University, Seoul 04620, Korea.
Faculty of Marine Environmental Science, University of Science and Technology (UST), Geoje 53201, Korea.
Sensors (Basel). 2018 Apr 2;18(4):1069. doi: 10.3390/s18041069.
Environmental pollution by various industrial chemicals and biological agents poses serious risks to human health. Especially, marine contamination by potentially toxic elements (PTEs) has become a global concern in recent years. Many efforts have been undertaken to monitor the PTE contamination of the aquatic environment. However, there are few approaches available to assess the PTE exposure of aquatic organisms. In this research, we developed a strategy to evaluate the heavy metal exposure of marine organisms, by measuring the expression levels of metallothionein protein derived from (OjaMT). OjaMT is a biomarker of heavy metal exposure because the expression level increases upon heavy metal exposure. The developed assay is based on a real-time, label-free surface plasmon resonance (SPR) measurement. Anti-OjaMT antibody and anti-OjaMT single-chain fragment of variable region (scFv) were used as detection probes. Two types of SPR sensor chips were fabricated, by immobilizing antibody or Cys3-tagged scFv (scFv-Cys3) in a controlled orientation and were tested for in situ label-free OjaMT detection. Compared to the antibody-presenting sensor chips, the scFv-presenting sensor chips showed improved performance, displaying enhanced sensitivity and enabling semi-quantitative detection. The portable SPR system combined with scFv-immobilized sensor chips is expected to provide an excellent point-of-care testing system that can monitor target biomarkers in real time.
各种工业化学品和生物制剂造成的环境污染对人类健康构成了严重威胁。特别是近年来,海洋中潜在有毒元素(PTEs)的污染已成为全球关注的焦点。已经做出了许多努力来监测水环境污染中的 PTE 污染。但是,评估水生生物 PTE 暴露的方法很少。在这项研究中,我们开发了一种通过测量来自 (OjaMT)的金属硫蛋白蛋白表达水平来评估海洋生物重金属暴露的策略。OjaMT 是重金属暴露的生物标志物,因为在重金属暴露时表达水平会增加。开发的测定法基于实时、无标记表面等离子体共振(SPR)测量。抗-OjaMT 抗体和抗-OjaMT 单链可变区片段(scFv)被用作检测探针。通过将抗体或 Cys3 标记的 scFv(scFv-Cys3)以受控取向固定化,制造了两种类型的 SPR 传感器芯片,并对其进行了原位无标记 OjaMT 检测测试。与呈现抗体的传感器芯片相比,呈现 scFv 的传感器芯片显示出改进的性能,显示出增强的灵敏度并能够进行半定量检测。结合 scFv 固定化传感器芯片的便携式 SPR 系统有望提供出色的即时护理测试系统,能够实时监测目标生物标志物。