Reichert W M, Truskey G A
Department of Biomedical Engineering, Duke University, Durham, NC 27706.
J Cell Sci. 1990 Jun;96 ( Pt 2):219-30. doi: 10.1242/jcs.96.2.219.
Total Internal Reflection Fluorescence (TIRF) is a powerful technique for visualizing focal and close contacts between the cell and the surface. Practical application of TIRF has been hampered by the lack of straightforward methods to calculate separation distances. The characteristic matrix theory of thin dielectric films was used to develop simple exponential approximations for the fluorescence excited in the cell-substratum contact region during a TIRF experiment. Two types of fluorescence were examined: fluorescently labeled cell membranes, and a fluorescent water-soluble dye. By neglecting the refractive index of the cell membrane, the fluorescence excited in the cell membrane was modelled by a single exponential function while the fluorescence in the membrane/substratum water gap followed a weighted sum of two exponentials. The error associated with neglecting the cell membrane for an incident angle of 70 degrees never exceeded 2.5%, regardless of the cell-substratum separation distance. Comparisons of approximated fluorescence intensities to more exact solutions of the fluorescence integrals for the three-phase model indicated that the approximations are accurate to about 1% for membrane/substratum gap thicknesses of less than 50 nm if the cytoplasmic and water gap refractive indices are known. The intrinsic error of this model in the determination of membrane/substratum separations was 10% as long as the uncertainties in the water gap and cytoplasmic refractive indices were less than 1%.
全内反射荧光(TIRF)是一种用于观察细胞与表面之间局域和紧密接触的强大技术。TIRF的实际应用因缺乏计算分离距离的直接方法而受到阻碍。利用薄介电膜的特征矩阵理论,为TIRF实验中细胞 - 基质接触区域激发的荧光开发了简单的指数近似方法。研究了两种类型的荧光:荧光标记的细胞膜和荧光水溶性染料。通过忽略细胞膜的折射率,细胞膜中激发的荧光由单个指数函数建模,而膜/基质水间隙中的荧光遵循两个指数的加权和。无论细胞 - 基质分离距离如何,对于70度入射角忽略细胞膜所产生的误差从未超过2.5%。将近似荧光强度与三相模型荧光积分的更精确解进行比较表明,如果已知细胞质和水间隙的折射率,对于小于50nm的膜/基质间隙厚度,近似值的准确度约为1%。只要水间隙和细胞质折射率的不确定性小于1%,该模型在确定膜/基质分离时的固有误差为10%。