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High-Contrast Imaging of Biomolecular Interactions Using Liquid Crystals Supported on Roller Printed Protein Surfaces

机译:使用支持在滚筒印刷的蛋白质表面上的液晶对生物分子相互作用进行高对比度成像

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In this study, we report a new method for the high contrast imaging of biomolecular interactions at roller printed protein surfaces using thermotropic liquid crystals (LCs). Avidin was roller printed and covalently immobilized onto the obliquely deposited gold surface that was decorated with carboxylic acid-terminated self-assembled monolayers (SAMs). The optical response of LCs on the roller printed film of avidin contrasted sharply with that on the obliquely deposited gold surface. The binding of biotin-peroxidase to the roller printed avidin was then investigated on the obliquely deposited gold substrate. LCs exhibited a non-uniform and random orientation on the roller printed area decorated with the complex of avidin and biotin-peroxidase, while LCs displayed a uniform and planar orientation on the area without roller printed proteins. The orientational transition of LCs from uniform to non-uniform state was triggered by the erasion of nanometer-scale topographies on the roller printed surface after the binding of biotin-peroxidase to the surface-immobilized avidin. The specific binding events of protein-receptor interactions were also confirmed by atomic force microscopy and ellipsometry. These results demonstrate that the roller printing of proteins on obliquely deposited gold substrates could provide a high contrast signal for imaging biomolecular interactions using LCbased sensors.
机译:在这项研究中,我们报告了一种新的方法,用于使用热致液晶(LC)对辊印刷的蛋白质表面上的生物分子相互作用进行高对比度成像。将抗生物素蛋白辊压印刷并共价固定在倾斜沉积的金表面上,该表面用羧酸封端的自组装单层(SAMs)装饰。 LC在亲和素的辊式印刷膜上的光学响应与在倾斜沉积的金表面上的光学响应形成鲜明对比。然后在倾斜沉积的金基底上研究生物素过氧化物酶与辊式印刷的抗生物素蛋白的结合。 LC在用抗生物素蛋白和生物素过氧化物酶复合物装饰的辊式印刷区域上显示出不均匀且随机的方向,而LC在没有辊式印刷蛋白质的区域上显示出均匀且平面的方向。在生物素过氧化物酶与表面固定的抗生物素蛋白结合后,辊子印刷表面上纳米尺度形貌的消失触发了LCs从均匀状态到非均匀状态的取向转变。蛋白质-受体相互作用的特异性结合事件也通过原子力显微镜和椭圆光度法证实。这些结果表明,在倾斜沉积的金底物上滚动印刷蛋白质可以为使用基于LC的传感器成像生物分子相互作用提供高对比度信号。

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