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基于垂直腔面发射激光器和电荷耦合器件的无标记光学纳米等离子体生物传感

Optical label-free nanoplasmonic biosensing using a vertical-cavity surface-emitting laser and charge-coupled device.

机构信息

BioNano Systems Laboratory, MC2, Chalmers University of Technology, 412 96 Göteborg, Sweden.

出版信息

Anal Chem. 2010 Feb 15;82(4):1535-9. doi: 10.1021/ac9025169.

Abstract

We present a compact platform for biochemosensing based on the combination of a vertical-cavity surface-emitting laser (VCSEL) light source, microelectromechanical systems (MEMS)-based microoptics, a specially designed nanoplasmonic sensing chip, and charge-coupled device (CCD) detector. The platform does not require any spectral analyzer for signal evaluation, showing good promise for facile integration, neither does it use any microscope setup for the signal collection or imaging. The analytical capabilities of the developed biochemosensing platform are demonstrated by evaluation of the protein-substrate (biotinylated bovine serum albumin-gold) and the protein-protein (biotin-NeutrAvidin) binding kinetics, which is further compared to detection based on conventional optical extinction spectroscopy. The instrument is able to detect low femtomoles of adsorbed proteins with the limit of detection comparable to the state-of-the-art research and commercial optical label-free biochemosensors.

摘要

我们提出了一种基于垂直腔面发射激光器(VCSEL)光源、基于微机电系统(MEMS)的微光学、专门设计的纳米等离子体传感芯片和电荷耦合器件(CCD)探测器组合的生化传感紧凑型平台。该平台在信号评估时不需要任何光谱分析仪,具有易于集成的良好前景,也不需要任何显微镜设置用于信号采集或成像。通过评估蛋白质-底物(生物素化牛血清白蛋白-金)和蛋白质-蛋白质(生物素-NeutrAvidin)结合动力学,展示了所开发的生化传感平台的分析能力,并进一步与基于传统光消光谱法的检测进行了比较。该仪器能够检测低飞摩尔吸附蛋白质,其检测限可与最先进的研究和商业光学无标记生化传感器相媲美。

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