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Angle-Scanning Surface Plasmon Resonance System with 3D Printed Components for Biorecognition Investigation

机译:具有3D打印组件的角度扫描表面等离子共振系统,用于生物识别研究

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Surface plasmon resonance (SPR) is a real-time, label-free, and high-sensitive detection technology. SPR has been widely used in many applications such as biomolecular interaction analysis, environmental monitoring, and medical diagnostics. However, conventional SPR sensor systems usually require expensive equipment and complicated optics. In this paper, we have demonstrated a rapid prototyping of angle-scanning SPR for bioanalytical investigation. Rapid prototyping was attained by utilizing the FDM (fused deposition modeling) based 3D (three-dimensional) printing technology. Two rotating platforms were employed to drive the laser source and photodiode, respectively. A temperature regulation unit was incorporated to maintain the system temperature in order to reduce the temperature effect. The proposed SPR rapid prototyping yielded a refractive index resolution of 6.4×10−6 RIU (refractive index unit), and the biotin-avidin system validated the kinetics parameters measurement capability. The obtained results indicated that the FDM 3D printing has great potential for developing rapid-prototyping SPR system.
机译:表面等离振子共振(SPR)是一种实时,无标记,高灵敏度的检测技术。 SPR已被广泛用于许多应用中,例如生物分子相互作用分析,环境监测和医学诊断。但是,常规的SPR传感器系统通常需要昂贵的设备和复杂的光学器件。在本文中,我们已经证明了用于生物分析研究的角度扫描SPR的快速原型。通过利用基于FDM(熔融沉积建模)的3D(三维)打印技术,可以实现快速原型制作。使用两个旋转平台分别驱动激光源和光电二极管。装有温度调节单元以维持系统温度,以减少温度影响。拟议的SPR快速原型制作的折射率分辨率为6.4×10-6 RIU(折射率单位),生物素-亲和素系统验证了动力学参数的测量能力。所得结果表明,FDM 3D打印具有开发快速原型SPR系统的巨大潜力。

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