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Biophotonic studies on lipid membranes using Oblique Incidence Reflectivity Difference (OI-RD) ellipsometry

机译:使用倾斜入射反射差异(OI-RD)椭圆形测定脂质膜的生物体研究

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In this study we report new results on the changes in optical properties of glass surfaces induced during wet photolithography using Oblique Incidence Reflectivity Difference Ellipsometry (OI-RD). A novel wet UV-photolithographic method for patterning phospholipid bilayers into two-dimensional arrays of voids and patches on hydrophilic glass substrates is presented. Especially, this technique involves etching the glass substrate fused with lipid vesicle solution and subsequently illuminated with short-wavelength UV light through a photo mask thus creating voids in the irradiated regions. The effects of the chemical etching and subsequent UV irradiation on the surfaces of microscope glass slides are investigated using the OI-RD technique. In this study, we have observed that the UV irradiation after chemical etching further changes the properties of the surface, even in the absence of the lipid bilayer. As a result, irradiating the chemically etched surface before the UV photolithography step renders the whole surface homogenous. Furthermore, fluorescence recovery after photobleaching (FRAP) experiments have been conducted on such homogenized surfaces which reveal that the fluidic properties of the membranes are retained. The created patterns are suitable to study protein-DNA interactions in the lipid environment. Our long term goal is to utilize this technique as a new screening approach for testing drug interactions above and below the cell surface.
机译:在这项研究中,我们向使用倾斜入射反射差异椭圆形测量(OI-RD)在湿光刻期间诱导的玻璃表面的光学性质的变化进行了新的结果。提出了一种用于将磷脂双层进行图案化的新型湿紫外光光刻法,其分为水玻璃基板上的空隙和贴片的二维阵列。特别地,该技术涉及蚀刻与脂质囊泡溶液熔化的玻璃基板,随后通过光掩模用短波长UV光照射,从而在照射区域中产生空隙。使用OI-RD技术研究了化学蚀刻和随后的UV照射对显微镜玻璃载玻片的表面的影响。在这项研究中,我们观察到化学蚀刻后的UV照射进一步改变了表面的性质,即使在没有脂质双层的情况下也是如此。结果,在UV光刻步骤之前照射化学蚀刻的表面使整个表面均匀。此外,在这种均化表面上进行了光漂白(FRAP)实验后的荧光回收,所述均质表面上进行了揭示膜的流体性质被保留。所产生的模式适用于研究脂质环境中的蛋白质-DNA相互作用。我们的长期目标是利用该技术作为一种新的筛选方法,用于测试细胞表面上方和下方的药物相互作用。

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