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Theoretical and Experimental Analysis of Arrayed Imaging Reflectometry as a Sensitive Proteomics Technique

机译:作为灵敏的蛋白质组学技术的阵列成像反射仪的理论和实验分析

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Arrayed imaging reflectometry (AIR) is a newly developed label-free optical biosensing technique based on the creation and perturbation of a condition of zero reflectance on a silicon substrate. The antireflective coating is formed by covalently immobilizing arrayed probes on a silicon dioxide film. Probe-target complex formation causes a localized increase in optical thickness and a measurable reflectance change. To evaluate the performance of AIR, we have employed two proteins, intimin and tir, from enteropathogenic E. coli that are critical to the bacterium's mechanism of host infection. Using substrates functionalized with the intimin-binding domain of tir, we demonstrate detection of the extracellular domain of intimin at concentrations as low as 10 pM. Through the use of a diffusion-limited model for the intimin-tir binding interaction at this concentration, we estimate the detected intimin surface concentration to be 0.33 pg/mm~(2).
机译:阵列成像反射仪(AIR)是一种新开发的无标记光学生物传感技术,其基于在硅基板上零反射率条件的产生和摄动。通过将阵列的探针共价固定在二氧化硅膜上来形成抗反射涂层。探针-靶复合物的形成导致光学厚度的局部增加和可测量的反射率变化。为了评估AIR的性能,我们使用了来自肠道致病性大肠杆菌的两种蛋白,即intimin和tir,这两种蛋白对细菌的宿主感染机制至关重要。使用用tir的intimin结合域功能化的底物,我们证明了在低至10 pM的浓度下检测intimin的胞外域。通过使用扩散限制模型在此浓度下的intimin-tir结合相互作用,我们估计检测到的intimin表面浓度为0.33 pg / mm〜(2)。

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