Starr T E, Thompson N L
Department of Chemistry, University of North Carolina, Chapel Hill 27599-3290, USA.
Biophys J. 2001 Mar;80(3):1575-84. doi: 10.1016/S0006-3495(01)76130-9.
Total internal reflection with fluorescence correlation spectroscopy (TIR-FCS) is a method for measuring the surface association/dissociation rates and absolute densities of fluorescent molecules at the interface of solution and a planar substrate. This method can also report the apparent diffusion coefficient and absolute concentration of fluorescent molecules very close to the surface. An expression for the fluorescence fluctuation autocorrelation function in the absence of contributions from diffusion through the evanescent wave, in solution, has been published previously (N. L. Thompson, T. P. Burghardt, and D. Axelrod. 1981, Biophys. J. 33:435-454). This work describes the nature of the TIR-FCS autocorrelation function when both surface association/dissociation kinetics and diffusion through the evanescent wave contribute to the fluorescence fluctuations. The fluorescence fluctuation autocorrelation function depends in general on the kinetic association and dissociation rate constants, the surface site density, the concentration of fluorescent molecules in solution, the solution diffusion coefficient, and the depth of the evanescent field. Both general and approximate expressions are presented.
全内反射荧光相关光谱法(TIR-FCS)是一种用于测量溶液与平面基底界面处荧光分子的表面缔合/解离速率以及绝对密度的方法。该方法还可以报告非常接近表面的荧光分子的表观扩散系数和绝对浓度。先前已发表了在不存在通过倏逝波在溶液中扩散的贡献时荧光涨落自相关函数的表达式(N. L. 汤普森、T. P. 布尔哈特和D. 阿克塞尔罗德。1981年,《生物物理杂志》33:435 - 454)。这项工作描述了当表面缔合/解离动力学和通过倏逝波的扩散都对荧光涨落有贡献时TIR-FCS自相关函数的性质。荧光涨落自相关函数通常取决于动力学缔合和解离速率常数、表面位点密度、溶液中荧光分子的浓度、溶液扩散系数以及倏逝场的深度。给出了一般表达式和近似表达式。