Department of Chemistry, University of Sheffield, Brook Hill, Sheffield, UK.
Biointerphases. 2012 Dec;7(1-4):54. doi: 10.1007/s13758-012-0054-6. Epub 2012 Sep 5.
Exposure of films formed by the adsorption of oligo(ethylene glycol) (OEG) functionalized trichlorosilanes on glass to UV light from a frequency-doubled argon ion laser (244 nm) causes photodegradation of the OEG chain. Although the rate of degradation is substantially slower than for monolayers of OEG terminated thiolates on gold, it is nevertheless possible to form micrometer-scale patterns by elective adsorption of streptavidin to exposed regions. A low density of aldehyde functional groups is produced, and this enables derivatization with nitrilotriacetic acid via an amine linker. Complexation with nickel enables the site-specific immobilization of histidine-tagged yellow and green fluorescent proteins. Nanometer-scale patterns may be fabricated using a Lloyd's mirror interferometer, with a sample and mirror set at right angles to each other. At low exposures, partial degradation of the OEG chains does not remove the protein-resistance of the surface, even though friction force microscopy reveals the formation of patterns. At an exposure of ca. 18 J cm(-2), the modified regions became adhesive to proteins in a narrow region ca. 30 nm (λ/8) wide. As the exposure is increased further the lines quickly broaden to ca. 90 nm. Adjustment of the angle between the sample and mirror enables the fabrication of lines of His-tagged green fluorescent protein at a period of 340 nm that could be resolved using a confocal microscope.
将吸附在玻璃上的寡聚(乙二醇)(OEG)功能化三氯硅烷形成的薄膜暴露于氩离子激光(244nm)的紫外光下会导致 OEG 链的光降解。虽然降解速率比金上的 OEG 终止硫醇单层要慢得多,但仍然可以通过选择性吸附链霉亲和素到暴露的区域来形成微米级图案。会产生低密度的醛基官能团,这使得可以通过胺连接体与亚氨基二乙酸进行衍生化。与镍络合可以实现组氨酸标记的黄色和绿色荧光蛋白的特异性固定化。可以使用劳埃德镜干涉仪制造纳米级图案,样品和镜子彼此成直角设置。在低曝光下,OEG 链的部分降解不会去除表面的蛋白质抗性,即使摩擦力显微镜显示形成了图案。在约 18 J cm(-2)的曝光下,修饰区域在约 30nm(λ/8)宽的狭窄区域内对蛋白质具有粘性。随着曝光的进一步增加,线很快变宽到约 90nm。调整样品和镜子之间的角度可以在周期为 340nm 的条件下制造 His 标记的绿色荧光蛋白线,这些线可以使用共聚焦显微镜来分辨。