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Free Energy Calculations for DNA Near Surfaces Using an Ellipsoidal Geometry

机译:使用椭球几何体计算DNA近表面的自由能

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摘要

The change in some thermodynamic quantities such as Gibbs' free energy, entropy and enthalpy of the binding of two DNA strands (forming a double helix), while one is tethered to a surface and are analytically calculated. These particles are submerged in an electrolytic solution; the ionic strength of the media allows the linearized version of the Poisson-Boltzmann equation (from the theory of the double layer interaction) to properly describe the interactions []. There is experimental and computational evidence that an ion penetrable ellipsoid is an adequate model for the single strand and the double helix [–]. The analytic solution provides simple calculations useful for DNA chip design. The predicted electrostatic effects suggest the feasibility of electronic control and detection of DNA hybridization in the fast growing area of DNA recognition.
机译:一些热力学量的变化,例如吉布斯的自由能,熵和两条DNA链的结合焓(形成双螺旋),而一条被束缚在表面上并进行分析计算。这些颗粒浸没在电解液中。介质的离子强度使Poisson-Boltzmann方程的线性化形式(来自双层相互作用的理论)能够正确地描述相互作用[]。有实验和计算证据表明,离子可穿透的椭球体是单链和双螺旋的适当模型[–]。该分析解决方案提供了对DNA芯片设计有用的简单计算。预测的静电效应表明,在快速发展的DNA识别领域中,电子控制和检测DNA杂交的可行性。

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