Zhang Xiao-Ling, Liu Yan, Fan Ting, Hu Ning, Yang Zhong, Chen Xi, Wang Zhen-Yu, Yang Jun
Key Laboratory of Biorheological Science and Technology, Chongqing University, Ministry of Education, Bioengineering College, Chongqing University, Chongqing 400030, China.
Chongqing Engineering Research Center of Medical Electronics Technology, Chongqing University, Bioengineering College, Chongqing University, Chongqing 400030, China.
Sensors (Basel). 2017 Jun 19;17(6):1435. doi: 10.3390/s17061435.
A portable multichannel surface plasmon resonance (SPR) biosensor device is presented in this study. As an optical biosensor device, the core component of its light path is a semi-cylindrical prism, which is used as the coupling unit for the excitation of the SPR phenomena. Based on this prism, a wedge-shaped incident light beam including a continuous angle range (10°) is chosen to replace the commonly-used parallel light beam in traditional SPR devices, in which the incident angle is adjusted by a sophisticated mechanical system. Thus, complicated, cumbersome, and costly mechanical structures can be avoided in this design. Furthermore, the selection of a small and high-stability semiconductor laser and matrix CCD detector as well as a microfluidic system aids in the realization of a miniaturized and multichannel device. Several different samples were used to test the performance of this new device. For ethanol with different concentrations, the sensing response was of good linear relativity with the concentration ( = 3.17143 + 2.81518, ² = 0.97661). Mouse IgG and goat anti-mouse IgG were used as biological samples for immunological analysis, and BSA as the control group. Good specific recognition between mouse IgG and goat anti-mouse IgG has been achieved. The detection limit of antibody to antigen coated on the sensing surface was about 25 mg/L without surface modification.
本研究展示了一种便携式多通道表面等离子体共振(SPR)生物传感器装置。作为一种光学生物传感器装置,其光路的核心部件是一个半圆柱形棱镜,用作激发SPR现象的耦合单元。基于此棱镜,选择了一个包含连续角度范围(10°)的楔形入射光束来替代传统SPR装置中常用的平行光束,传统装置中入射角是通过复杂的机械系统来调节的。因此,该设计可避免复杂、笨重且昂贵的机械结构。此外,选用小型且稳定性高的半导体激光器和矩阵电荷耦合器件探测器以及微流控系统有助于实现小型化和多通道装置。使用了几种不同的样品来测试这种新装置的性能。对于不同浓度的乙醇,传感响应与浓度具有良好的线性相关性( = 3.17143 + 2.81518,² = 0.97661)。小鼠免疫球蛋白G(IgG)和山羊抗小鼠IgG用作免疫分析的生物样品,牛血清白蛋白(BSA)作为对照组。已实现小鼠IgG与山羊抗小鼠IgG之间良好的特异性识别。在未进行表面修饰的情况下,传感表面上包被的抗体对抗原的检测限约为25 mg/L。