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Diffusion-reaction modelling of DNA hybridization kinetics on biochips

机译:生物芯片上DNA杂交动力学的扩散反应建模

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An analytical expression for the rate of DNA hybridization on the surface of DNA biochips is established for the case of a finite 1-D diffusion space. The expression allows to account for the diffusion-limited supply of unreacted probe DNA and was obtained by solving the continuous 1-D reaction-diffusion mass balance using a Finite Fourier Transform technique. The extrapolation of the presently considered 1-D case to the full 3-D case is outlined as well. By bringing the obtained result into concurrence with the results of a stochastic random walk study, the kinetic constant k of the continuous reaction-diffusion model could be expressed as a function of the basic physico-chemical parameters (persistence length and jump frequency of the Brownian motion, collision frequency, binding probability) of the individual molecules. With the availability of an analytical expression describing the full time course of the 1-D hybridization process, and by using the Damkohler number Da = kh/D-mol the different reaction- and diffusion-limited regimes occurring during the course of a hybridization process can now be described in general, dimensionless terms, allowing to establish some very simple rules for the design of DNA biochips and flow-through biosensors. (C) 2003 Elsevier Ltd. All rights reserved. [References: 32]
机译:对于一维扩散空间有限的情况,建立了DNA生物芯片表面上DNA杂交速率的分析表达式。该表达式可以解释未反应探针DNA的扩散受限供应,该表达式是通过使用有限傅立叶变换技术求解连续的一维反应扩散质量平衡而获得的。还概述了当前考虑的1-D情况到完整3-D情况的外推。通过使获得的结果与随机随机游走研究的结果一致,连续反应扩散模型的动力学常数k可以表示为基本理化参数的函数(布朗氏的持续时间和跳跃频率)运动,碰撞频率,结合概率)。利用描述一维杂交过程全过程的解析表达式,并通过使用达姆克勒数Da = kh / D-mol,在杂交过程中会发生不同的反应和扩散受限机制现在可以用通用的无量纲术语进行描述,从而可以为DNA生物芯片和流通式生物传感器的设计建立一些非常简单的规则。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:32]

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