Weger Lukas, Hoffmann-Jacobsen Kerstin
Department of Chemistry, Niederrhein University of Applied Sciences, Adlerstr. 32, 47798 Krefeld, Germany.
Rev Sci Instrum. 2017 Sep;88(9):093102. doi: 10.1063/1.4986235.
Fluorescence correlation spectroscopy (FCS) measures fluctuations in a (sub-)femtoliter volume to analyze the diffusive behavior of fluorescent particles. This highly sensitive method has proven to be useful for the analysis of dynamic biological systems as well as in chemistry, physics, and material sciences. It is routinely performed with commercial fluorescence microscopes, which provide a confined observation volume by the confocal technique. The evanescent wave of total internal reflectance (TIR) is used in home-built systems to permit a surface sensitive FCS analysis. We present a combined confocal and TIR-FCS setup which uses economic low-power pulsed diode lasers for excitation. Excitation and detection are coupled to time-correlated photon counting hardware. This allows simultaneous fluorescence lifetime and FCS measurements in a surface-sensitive mode. Moreover, the setup supports fluorescence lifetime correlation spectroscopy at surfaces. The excitation can be easily switched between TIR and epi-illumination to compare the surface properties with those in liquid bulk. The capabilities of the presented setup are demonstrated by measuring the diffusion coefficients of a free dye molecule, a labeled polyethylene glycol, and a fluorescent nanoparticle in confocal as well as in TIR-FCS.
荧光相关光谱法(FCS)通过测量(亚)飞升体积内的涨落来分析荧光粒子的扩散行为。这种高灵敏度方法已被证明在分析动态生物系统以及化学、物理和材料科学中很有用。它通常使用商用荧光显微镜进行,这些显微镜通过共聚焦技术提供一个受限的观察体积。在自制系统中使用全内反射(TIR)的倏逝波来进行表面敏感的FCS分析。我们展示了一种结合共聚焦和TIR - FCS的装置,该装置使用经济的低功率脉冲二极管激光器进行激发。激发和检测与时间相关光子计数硬件相耦合。这允许在表面敏感模式下同时进行荧光寿命和FCS测量。此外,该装置支持表面的荧光寿命相关光谱法。激发可以很容易地在TIR和落射照明之间切换,以比较表面性质与液体本体中的性质。通过在共聚焦以及TIR - FCS中测量游离染料分子、标记的聚乙二醇和荧光纳米颗粒的扩散系数,展示了所展示装置的能力。