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Microspot surface enhanced fluorescence from sculptured thin films for control of antibody immobilization

机译:微点表面增强了雕刻薄膜的荧光,以控制抗体的固定

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Nano-sculptured thin films (STF) are prepared by the glancing angle deposition technique and take different forms of nano columnar structures. Varieties of STFs are investigated to find the optimum structure for biosensing based on the surface enhanced fluourescence (SEF). The highest amplification of fluorescent signal is found for Ag based STFs on fused silica giving an enhancement factor of x23, where h=400nm, d=75nm, a=23° relative to Ag dense film using fluorescent dye Rhodamine 123. Based on this, a demonstration of monitoring of antibodies and even confirmation of successful immobilization of the receptors presented. Bound antibody to the thiol self assembly monolayer on sample surface is then quantified by means of the fluorescent signal. Upon excitation of the fluorophore by Hg source light, a CCD camera with a controlled exposure time detects the pattern of fluorescent antibody/E-coli bacteria colonies on the STF surface. A fiber optic holder attached to the microscope allowed quantitative measurement of the fluorescence spectrum on a microspot.
机译:纳米雕刻薄膜(STF)是通过掠角沉积技术制备的,并采用不同形式的纳米柱状结构。对各种STF进行了研究,以找到基于表面增强荧光(SEF)的生物传感的最佳结构。对于使用熔融染料罗丹明123的Ag致密膜,熔融石英上基于Ag的STF的荧光信号的放大倍数最高,给出的增强因子为x23,其中h = 400nm,d = 75nm,a = 23°。展示了监测抗体的方法,甚至证实了所介绍受体的成功固定。然后通过荧光信号定量针对样品表面上的硫醇自组装单层的结合抗体。汞源光激发荧光团后,具有可控曝光时间的CCD相机将检测STF表面上的荧光抗体/大肠杆菌细菌菌落的模式。连接到显微镜的光纤支架可以定量测量微点上的荧光光谱。

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