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A kinetic study of analyte-receptor binding and dissociation for biosensor applications: a fractal analysis for two different DNA systems

机译:对生物传感器应用中分析物-受体结合和解离的动力学研究:对两种不同DNA系统的分形分析

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摘要

A fractal analysis of DNA binding and dissociation kinetics on biosensor surfaces is presented. The fractal approach provides an attractive, convenient method to model the kinetic data taking into account the effects of surface heterogeneity brought about by ligand immobilization. The fractal technique can be used in conjunction or as an alternate approach to conventional modeling techniques. Such as the Langmuir model. saturation model. etc. Examples analyzed include a DNA molecular beacon biosensor and a plasmid DNA-(cationic polymer) interaction biosensor. The molecular beacon example prod ides some insights into the nature of the surface and how it influences the binding rate coefficients. The DNA-cationic polymer interaction example provides some quantitative results on the binding and dissociation rate coefficients, Data taken from the literature may be modeled, in the case of binding. Using a single-fractal analysis or a dual-fractal analysis. The dual-fractal analysis results indicate a change in the binding mechanism as the reaction progresses on the surface. A single-fractal analysis is adequate to model the dissociation kinetics in the example presented. Relationships are presented for the binding rate coefficients as a function of their corresponding fractal dimension, D-f. which is an indication of the degree of heterogeneity that exists on the surface. When analyte-receptor binding is involved, an increase in the heterogeneity of the surface (increase in D-f) leads to an increase in the binding rate coefficient. (C) 2002 Elsevier Science Ireland Ltd. All rights reserved. [References: 18]
机译:分形分析的DNA结合和解离动力学在生物传感器表面上。分形方法提供了一种吸引人的便捷方法,可将动力学数据建模,同时考虑到配体固定化带来的表面异质性影响。分形技术可以结合使用或作为常规建模技术的替代方法。例如Langmuir模型。饱和度模型。分析的实例包括DNA分子信标生物传感器和质粒DNA-(阳离子聚合物)相互作用生物传感器。分子信标示例对表面的性质及其如何影响结合速率系数提供了一些见解。 DNA-阳离子聚合物相互作用的例子提供了一些有关结合和解离速率系数的定量结果。在结合的情况下,可以对取自文献的数据进行建模。使用单分形分析或双分形分析。双分形分析结果表明,随着反应在表面上进行,结合机理发生了变化。在所展示的实例中,单分形分析足以模拟离解动力学。给出了结合速率系数与它们相应的分形维数D-f的函数关系。这表明存在于表面的异质程度。当涉及分析物与受体的结合时,表面异质性的增加(D-f的增加)会导致结合速率系数的增加。 (C)2002 Elsevier Science Ireland Ltd.保留所有权利。 [参考:18]

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