Department of Optics and Photonics, National Central University, 300 Chung-Da Rd, Chung-Li 32001, Taiwan.
Sensors (Basel). 2011;11(8):7851-64. doi: 10.3390/s110807851. Epub 2011 Aug 11.
This paper describes a method for producing a novel type of ferromagnetic coded micro-carrier. The ferromagnetic coded micro-carriers are about 200 μm in length, 200 μm in width and 50 μm in thickness, and contain eight code elements with two distinguishable codes (hollow and solid), allowing for 2(8) unique codes. The code shapes include rectangle, circle, etc. Differently shaped coded micro-carriers could carry different antigens for detection of its complementary antibody. These many shapes of coded micro-carriers would be used simultaneously allowing us to make multiple detections for different antibodies at the same time. A molding process is applied for fabrication of the ferromagnetically coded micro-carriers where Fe material (Fe powder mixed with binder) is shaped in many tiny molds to produce the coded shapes used for identification of the bio-molecules. Magnetic force is used to control the movement and location of the ferromagnetic coded micro-carriers to prevent the loss during the hybridization process. The results of image process and analysis system testing are satisfactory. The results of our micro-carrier detection system for two sets of R and B color analysis are proportional to those obtained from ELISA antibody detection.
本文介绍了一种新型铁磁编码微载体的制备方法。该铁磁编码微载体长约 200μm,宽 200μm,厚 50μm,包含八个具有两种可区分码(空心和实心)的码元,可提供 2(8)个唯一码。码元形状包括矩形、圆形等。不同形状的编码微载体可携带不同的抗原,用于检测其互补抗体。这些形状各异的编码微载体可同时使用,从而可以同时对不同的抗体进行多次检测。采用注塑成型工艺制备铁磁编码微载体,将 Fe 材料(Fe 粉末与粘结剂混合)成型为许多微小模具,以制作用于生物分子识别的编码形状。利用磁场力控制铁磁编码微载体的运动和位置,防止在杂交过程中丢失。图像处理和分析系统测试的结果令人满意。我们的微载体检测系统对两组 R 和 B 颜色分析的结果与 ELISA 抗体检测的结果呈比例关系。