Department of Molecular Science & Technology, Ajou University, Suwon 16499, Republic of Korea.
Lab Chip. 2019 Dec 7;19(23):3931-3942. doi: 10.1039/c9lc00973f. Epub 2019 Oct 25.
Here, we proposed a retroreflective optical immunoassay platform by introducing the intrinsic sedimentation characteristics of a micro-retroreflector, namely retroreflective Janus particles (RJPs), wherein the sediment-based passive movement of RJPs minimised the random errors due to human involvement and resulted in a simple procedure that does not require the washing step, to follow the concept of point-of-care testing. The transparent sensing interface and the sedimentation property of RJPs were combined to develop a practical retroreflective immunoassay platform. For the sensing surface, transparent silanized poly(methyl methacrylate) was applied to the inverted focusing method. In the retroreflection phenomenon, as the incident light returns to its source by the retroreflector, efficient design of the retroreflective optical path between the light source and retroreflector can be crucial in signal registration. While preparing the RJP-bound transparent substrate on the microfluidic channel, the signal could be achieved more efficiently by directly focusing on the sensing interface, and not via the fluidic channels. To integrate this to build an immunoassay protocol, the sedimentation property of RJPs was employed for microfluidic chip inversion-based particle movement control, which was utilised for both luring and separating RJPs on the sensing surface, resulting in a wash-free immunoassay without any human involvement. To ensure accurate analysis, a time-lapse imaging-based image processing was conducted to eliminate the non-specific signals. To validate the applicability of the proposed immunoassay platform, quantification of acute cardiac infarction marker creatine kinase-MB was performed.
在这里,我们提出了一种反光免疫分析平台,通过引入微反光镜的固有沉降特性,即反光詹纳斯粒子(RJPs),其中 RJPs 的基于沉降的被动运动最大限度地减少了由于人为参与而导致的随机误差,并导致了一种简单的程序,不需要洗涤步骤,遵循即时检测的概念。透明感测界面和 RJPs 的沉降特性被结合起来开发了一种实用的反光免疫分析平台。对于感测表面,应用透明硅烷化聚甲基丙烯酸甲酯到倒置聚焦方法。在反光现象中,当入射光通过反光镜返回到其源时,在光源和反光镜之间设计有效的反光光路对于信号登记至关重要。在微流道上准备结合了 RJP 的透明基底时,可以通过直接聚焦在感测界面上更有效地获得信号,而不是通过流道。为了集成这一点以建立免疫分析方案,使用 RJPs 的沉降特性来控制微流控芯片倒置的颗粒运动,这用于在感测表面上吸引和分离 RJPs,从而实现无需任何人为参与的免洗免疫分析。为了确保准确分析,进行基于时移成像的图像处理以消除非特异性信号。为了验证所提出的免疫分析平台的适用性,对急性心肌梗死标志物肌酸激酶-MB 进行了定量分析。