Han Yong Duk, Kim Hyo-Sop, Park Yoo Min, Chun Hyeong Jin, Kim Jae-Ho, Yoon Hyun C
Department of Applied Chemistry & Biological Engineering and ‡Department of Molecular Science & Technology, Ajou University , Suwon 443749, South Korea.
ACS Appl Mater Interfaces. 2016 May 4;8(17):10767-74. doi: 10.1021/acsami.6b02014. Epub 2016 Apr 22.
We developed retroreflective Janus microparticles (RJPs) as a novel optical immunosensing probe for use in a nonspectroscopic retroreflection-based immunoassay. By coating the metals on the hemispherical surface of silica particles, highly reflective RJPs were fabricated. On the basis of the retroreflection principle, the RJPs responded to polychromatic white light sources, in contrast to conventional optical probes, which require specific monochromatic light. The retroreflection signals from RJPs were distinctively recognized as shining dots, which can be intuitively counted using a digital camera setup. Using the developed retroreflective immunosensing system, cardiac troponin I, a specific biomarker of acute myocardial infarction, was detected with high sensitivity. On the basis of the demonstrated features of the retroreflective immunosensing platform, we expect that our approach may be applied for various point-of-care-testing applications.
我们开发了逆向反射型Janus微粒(RJPs)作为一种新型光学免疫传感探针,用于基于非光谱逆向反射的免疫分析。通过在二氧化硅颗粒的半球形表面涂覆金属,制备出了高反射性的RJPs。基于逆向反射原理,RJPs对多色白光源有响应,这与需要特定单色光的传统光学探针不同。RJPs的逆向反射信号被独特地识别为亮点,可使用数码相机装置直观地进行计数。利用所开发的逆向反射免疫传感系统,高灵敏度地检测到了急性心肌梗死的特异性生物标志物心肌肌钙蛋白I。基于逆向反射免疫传感平台所展示的特性,我们期望我们的方法可应用于各种即时检测应用。