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Visualization of molecule interaction between antigen and antibody: one of the ellipsometric imaging a

机译:抗原和抗体之间分子相互作用的可视化:椭偏成像之一

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Abstract: It is to investigate molecule interactions between antigen and antibody with ellipsometric imaging technique and demonstrate some features and possibilities offered by applications of the technique. Molecule interaction is an important interest for molecule biologist and immunologist. They have used some established methods such as immunofluorescence, radioimmunoassay and surface plasma resonance, etc. to study the molecule interaction. At the same time, experimentalists hope to use some updated technique with more direct visual results. Ellipsometric imaging is non-destructive and exhibits a high sensitivity to phase transitions with thin layers. It is capable of imaging local variations in the optical properties such as thickness due to the presence of different surface concentration of molecule or different deposited molecules. If a molecular mono-layer (such as antigen) with bio-activity were deposited on a surface to form a sensing surface and then incubated in a solution with other molecules (such as antibody), a variation of the layer thickness when the molecules on the sensing surface reacted with the others in the solution could be observed with ellipsometric imaging. Every point on the surface was measured at the same time with a high sensitivity to distinguish the variation between mono- layer and molecular complexes. Ellipsometric imaging is based on conventional ellipsometry with charge coupled device (CCD) as detector and images are caught with computer with image processing technique. It has advantages of high sensitivity to thickness variation (resolution in the order of angstrom), big field of view (in square centimeter), high sampling speed (a picture taken within one second), and high lateral resolution (in the order of micrometer). Here it has just shown one application in study of antigen-antibody interaction, and it is possible to observe molecule interaction process with an in-situ technique. !6
机译:摘要:用椭偏成像技术研究抗原和抗体之间的分子相互作用,并证明该技术的应用提供了一些功能和可能性。分子相互作用是分子生物学家和免疫学家的重要兴趣。他们已经使用一些建立的方法,例如免疫荧光,放射免疫分析和表面等离子体共振等来研究分子的相互作用。同时,实验者希望使用一些更新的技术来获得更直接的视觉效果。椭偏成像是非破坏性的,并且对薄层的相变表现出很高的敏感性。由于存在不同的分子表面浓度或不同的沉积分子,它能够对光学特性(例如厚度)的局部变化进行成像。如果将具有生物活性的分子单层(例如抗原)沉积在表面上以形成传感表面,然后在溶液中与其他分子(例如抗体)一起孵育,则当分子在椭圆偏振成像可以观察到溶液中溶液与其他表面反应。以高灵敏度同时测量表面上的每个点,以区分单层和分子复合物之间的变化。椭偏成像是基于常规的椭偏测量,以电荷耦合器件(CCD)作为检测器,并使用具有图像处理技术的计算机捕获图像。它具有对厚度变化(分辨率以埃为单位)的高灵敏度,大视野(以平方厘米为单位),高采样速度(在一秒钟内拍摄的照片)和高横向分辨率(以微米为单位的优势)的优点。 )。在这里,它仅显示了在抗原-抗体相互作用研究中的一种应用,并且可以用原位技术观察分子相互作用的过程。 !6

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