De Leebeeck Angela, Kumar L K Swaroop, de Lange Victoria, Sinton David, Gordon Reuven, Brolo Alexandre G
Department of Mechanical Engineering, University of Victoria, Victoria, BC, Canada.
Anal Chem. 2007 Jun 1;79(11):4094-100. doi: 10.1021/ac070001a. Epub 2007 Apr 21.
A microfluidic device with integrated surface plasmon resonance (SPR) chemical and biological sensors based on arrays of nanoholes in gold films is demonstrated. Widespread use of SPR for surface analysis in laboratories has not translated to microfluidic analytical chip platforms, in part due to challenges associated with scaling down the optics and the surface area required for common reflection mode operation. The resonant enhancement of light transmission through subwavelength apertures in a metallic film suggests the use of nanohole arrays as miniaturized SPR-based sensing elements. The device presented here takes advantage of the unique properties of nanohole arrays: surface-based sensitivity; transmission mode operation; a relatively small footprint; and repeatability. Proof-of-concept measurements performed on-chip indicated a response to small changes in refractive index at the array surfaces. A sensitivity of 333 nm per refractive index unit was demonstrated with the integrated device. The device was also applied to detect spatial microfluidic concentration gradients and to monitor a biochemical affinity process involving the biotin-streptavidin system. Results indicate the efficacy of nanohole arrays as surface plasmon-based sensing elements in a microfluidic platform, adding unique surface-sensitive diagnostic capabilities to the existing suite of microfluidic-based analytical tools.
展示了一种基于金膜纳米孔阵列的集成表面等离子体共振(SPR)化学和生物传感器的微流控装置。SPR在实验室中广泛用于表面分析,但尚未转化为微流控分析芯片平台,部分原因是与缩小光学元件以及普通反射模式操作所需的表面积相关的挑战。通过金属膜中亚波长孔径的光传输的共振增强表明可将纳米孔阵列用作基于SPR的小型化传感元件。这里展示的装置利用了纳米孔阵列的独特特性:基于表面的灵敏度;透射模式操作;相对较小的占地面积;以及可重复性。芯片上进行的概念验证测量表明对阵列表面折射率的微小变化有响应。该集成装置展示出每折射率单位333 nm的灵敏度。该装置还应用于检测空间微流控浓度梯度以及监测涉及生物素-链霉亲和素系统的生化亲和过程。结果表明纳米孔阵列作为微流控平台中基于表面等离子体的传感元件的有效性,为现有的基于微流控的分析工具套件增添了独特的表面敏感诊断能力。