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Waveguide evanescent field fluorescence microscopy: from cellsubstratum distances to kinetic cell behaviour

机译:波导蒸发场荧光显微镜:从Cellubstratum距离到动力学细胞行为

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We demonstrate an alternative to total internal reflection fluorescence (TIRF) microscopy. A method for imaging ultra thin films and living cells located on waveguides illuminated with their evanescent fields is introduced. Analysis of ionexchanged waveguides focusing on their application as substrates for microscopic study of interfacial phenomena is presented. Various LB film stacks were imaged to verify the intensity interpretation due to the exponentially decaying evanescent fields of the waveguides. The paper gives an overview on the imaging applications of this technique. The fluorescence intensity has been used to determine quantitatively the cell attachment of osteoblasts (bone forming cells) to substrate surfaces. In live cell studies trypsin (a protease) was used to alter attachment of the cells to the substrate, as a means to demonstrate feasibility of the method in measuring attachment dynamics of cells in real time.
机译:我们证明了全内反射荧光(TIRF)显微镜的替代方案。介绍了一种用于与其蒸发场照射的波导的超薄薄膜和活细胞进行成像的方法。介绍了对界面现象的微观研究底物作为底物的离子化的波导分析。成像各种LB膜堆叠以验证由于波导的指数衰减的渐变越野斑块引起的强度解释。本文概述了该技术的成像应用。已经使用荧光强度定量地将成骨细胞(骨形成细胞)的细胞附着到衬底表面。在活细胞研究中,使用胰蛋白酶(蛋白酶)来改变细胞对基材的附着,作为证明该方法在测量细胞的附着动态的方法中的可行性。

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