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首页> 外文期刊>Instrumentation science & technology: Designs and applications for chemistry, biotechnology, and environmental science >AN OBLIQUE-INCIDENCE REFLECTIVITY DIFFERENCE STUDY OF THE DEPENDENCE OF PROBE-TARGET REACTION CONSTANTS ON SURFACE TARGET DENSITY USING STREPTAVIDIN-BIOTIN REACTIONS AS A MODEL
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AN OBLIQUE-INCIDENCE REFLECTIVITY DIFFERENCE STUDY OF THE DEPENDENCE OF PROBE-TARGET REACTION CONSTANTS ON SURFACE TARGET DENSITY USING STREPTAVIDIN-BIOTIN REACTIONS AS A MODEL

机译:以链霉抗生物素蛋白-生物素反应为模型的探针-靶标反应常数与表面靶标密度相关性的斜入射反射率差异研究

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摘要

A combination of the microarray platform and oblique-incidence reflectivity difference (OI-RD) microscopy was used to study the dependence of kinetic constants of probe-target reactions on the surface density of immobilized targets. Streptavidin-biotin reactions with a very high binding affinity were employed as the study model. Oblique-incidence reflectivity difference microscopy, a label-free and surface-based detection technique, was developed for monitoring real-time binding curves between two interactive biomolecules, enabling the acquisition of kinetic constants such as on-rate, off-rate, and equilibrium dissociation constants. These kinetic constants are important in characterizing biomolecular interactions because in living cells all intercellular and intermolecular reactions are at dynamic rather than at stable equilibrium. The kinetic constant of streptavidin binding to surface-immobilized biotin-bovine serum albumin was demonstrated to be significantly affected by the density of surface bovine serum albumin conjugates, mainly due to mass-transport effects within targets.
机译:微阵列平台和斜入射反射率差(OI-RD)显微镜的组合用于研究探针目标反应的动力学常数对固定目标表面密度的依赖性。具有很高结合亲和力的链霉亲和素-生物素反应被用作研究模型。斜入射反射率差显微镜是一种无标记和基于表面的检测技术,用于监测两个相互作用生物分子之间的实时结合曲线,从而能够获取动力学常数,例如开通率,开环率和平衡率。离解常数。这些动力学常数对于表征生物分子相互作用非常重要,因为在活细胞中,所有细胞间和分子间反应都是动态的,而不是稳定的平衡。已证明链霉亲和素与表面固定的生物素-牛血清白蛋白结合的动力学常数受表面牛血清白蛋白结合物密度的显着影响,这主要归因于靶标内的质量转移效应。

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