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Development of POC optical immunosensor based upon the fluorescence anisotropy measurement

机译:基于荧光各向异性测量的POC光学免疫传感器的开发

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The blood test is a routine procedure in medical diagnosis. However it takes a couple of days to get the results because blood samples are analyzed by sending to the specialized facility because the operation of the blood test instrument is costly for a hospital or clinic. So development of a novel low cost blood test device is an important issue considering the burden of the patient. To developing a low cost and instant diagnosis system, various immunosensor have been studied because of it's quick response and application of micro fabrication. But background noise by the surface adsorption reduces the S/N ratio, and practical use of the immunosensor isn't possible for now. So we tried to detect antigen-antibody reaction by fluorescence anisotropy in this study. Fluorescence anisotropy retains the information of the rotational motion of antibody molecules. As the antigen bounds to the antibody, the degrees of rotational freedom are reduced and the antigen-antibody reaction can be detected by the shift of fluorescence anisotropy. In principle fluorescence anisotropy is not affected by the nonspecific surface adsorption. A micro optical immunosensor was fabricated. Detection of anisotropy change by the antigen-antibody reaction was demonstrated with the device. For higher S/N ratio observation, evanescent excitation system was also developed.
机译:验血是医学诊断中的常规程序。但是,由于要通过将血液样本发送到专业机构进行分析来分析血液样本,因此需要花费几天的时间,因为血液检测仪器的操作对于医院或诊所而言是昂贵的。因此,考虑到患者的负担,开发新颖的低成本血液测试装置是重要的问题。为了开发低成本和快速诊断系统,已经研究了各种免疫传感器,因为它的快速响应和微制造的应用。但是由于表面吸附而产生的背景噪音降低了信噪比,因此目前尚无法实际使用免疫传感器。因此,我们试图通过荧光各向异性检测抗原-抗体反应。荧光各向异性保留了抗体分子旋转运动的信息。当抗原与抗体结合时,旋转自由度降低,并且可以通过荧光各向异性的移动来检测抗原-抗体反应。原则上,荧光各向异性不受非特异性表面吸附的影响。制备了微光学免疫传感器。用该装置证明了通过抗原-抗体反应检测到各向异性变化。为了获得更高的信噪比,还开发了e逝激发系统。

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