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High refractive index substrates for fluorescence microscopy of biological interfaces with high z contrast

机译:高折射率底物用于具有高z对比度的生物界面的荧光显微镜

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摘要

Total internal reflection fluorescence microscopy is widely used to confine the excitation of a complex fluorescent sample very close to the material on which it is supported. By working with high refractive index solid supports, it is possible to confine even further the evanescent field, and by varying the angle of incidence, to obtain quantitative information on the distance of the fluorescent object from the surface. We report the fabrication of hybrid surfaces consisting of nm layers of SiO2 on lithium niobate (LiNbO3, n = 2.3). Supported lipid bilayer membranes can be assembled and patterned on these hybrid surfaces as on conventional glass. By varying the angle of incidence of the excitation light, we are able to obtain fluorescent contrast between 40-nm fluorescent beads tethered to a supported bilayer and fluorescently labeled protein printed on the surface, which differ in vertical position by only tens of nm. Preliminary experiments that test theoretical models for the fluorescence-collection factor near a high refractive index surface are presented, and this factor is incorporated into a semiquantitative model used to predict the contrast of the 40-nm bead/protein system. These results demonstrate that it should be possible to profile the vertical location of fluorophores on the nm distance scale in real time, opening the possibility of many experiments at the interface between supported membranes and living cells. Improvements in materials and optical techniques are outlined.
机译:全内反射荧光显微镜被广泛用于限制非常靠近其所支撑材料的复合荧光样品的激发。通过使用高折射率的固体载体,可以进一步限制渐逝场,并通过改变入射角来获得有关荧光物体与表面距离的定量信息。我们报告了在铌酸锂(LiNbO3,n = 2.3)上由SiO2纳米层组成的混合表面的制造。可以像在常规玻璃上一样,在这些混合表面上组装并构图支撑的脂质双层膜。通过改变激发光的入射角,我们能够获得束缚在支持的双层上的40 nm荧光珠与印刷在表面上的荧光标记蛋白之间的荧光对比,荧光蛋白在垂直位置仅相差数十nm。提出了测试高折射率表面附近的荧光收集因子理论模型的初步实验,并将该因子合并到用于预测40 nm珠/蛋白质系统对比度的半定量模型中。这些结果表明,应该有可能实时绘制纳米距离尺度上荧光团的垂直位置,从而为在被支撑的膜和活细胞之间的界面上进行许多实验提供了可能。概述了材料和光学技术方面的改进。

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