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Development of collinear transmission plasmonic biosensor for detection of HIV-1

机译:用于检测HIV-1的共线透射等离子体生物传感器的研制

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摘要

Surface Plasmon Resonance (SPR) which is widely used to study interactions between different types of biomolecules, has emerged as a technique of choice for rapid and quantitative analyses. However, there are still some challenges on the use of the classical SPR optical configuration. The prism-based configuration setup requires precise alignment of light onto the sample surface and the oblique reflection angle plane yield optical aberration. In this work we have built, characterized and optimized a simple collinear transmission geometry plasmonic system for the detection of HIV-1. Here, a continuous wave laser at 785 nm with power output of 300 mW was used as light source and a 40X objective lens coupled to a CCD camera was used to collect and detect the transmitted intensity change. Furthermore, a white light source was used to study the wavelength dependency of the sample. We present our findings which may be useful to develop biomedical devices for point-of-care diagnostics and healthcare applications.
机译:表面等离子体共振(SPR)已广泛用于研究不同类型生物分子之间的相互作用,已成为一种快速定量分析的选择技术。但是,使用经典的SPR光学配置仍然存在一些挑战。基于棱镜的配置设置需要将光精确对准样品表面,并且倾斜反射角平面会产生光学像差。在这项工作中,我们已经建立,表征和优化了用于检测HIV-1的简单共线透射几何等离子体系统。此处,使用功率为300 mW的785 nm连续波激光器作为光源,并使用与CCD摄像机耦合的40倍物镜来收集和检测透射强度变化。此外,使用白光源来研究样品的波长依赖性。我们介绍了我们的发现,这些发现可能对开发用于即时诊断和医疗保健应用的生物医学设备很有用。

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