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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Brownian dynamics simulations of electrophoretic DNA separations in a sparse ordered post array
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Brownian dynamics simulations of electrophoretic DNA separations in a sparse ordered post array

机译:稀疏有序柱阵列中电泳DNA分离的布朗动力学模拟

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摘要

We use Brownian dynamics simulations to analyze the electrophoretic separation of λ-DNA (48.5 kbp) and T4-DNA (169 kbp) in a hexagonal array of 1μm diameter posts with a 3μm center-to-center distance. The simulation method takes advantage of an efficient interpolation algorithm for the non-uniform electric field to reach an ensemble size (100 molecules) and simulation length scale (1 mm) that produces meaningful results for the average electrophoretic mobility and effective diffusion (dispersion) coefficient of these macromolecules as they move through the array. While the simulated electrophoretic mobility for λ-DNA is close to the experimental data, the simulation underestimates the magnitude of the corresponding dispersion coefficient. The simulations predict baseline resolution in a 15 mm device after 7 min using an electric field around 30 V/cm, with the resolution increasing exponentially as the electric field further decreases. The mobility and dispersivity data point out two essential phenomena that have been overlooked in previous models of DNA electrophoresis in post arrays: the relaxation time between collisions and simultaneous collisions with multiple posts.
机译:我们使用布朗动力学模拟来分析λ-DNA(48.5 kbp)和T4-DNA(169 kbp)在1μm直径柱状六边形阵列中的电泳分离,中心距为3μm。该模拟方法利用有效插值算法使非均匀电场达到整体大小(100个分子)和模拟长度标度(1 mm),从而为平均电泳迁移率和有效扩散(扩散)系数产生有意义的结果这些大分子在阵列中移动。虽然模拟的λ-DNA电泳迁移率接近实验数据,但模拟低估了相应分散系数的大小。该模拟使用30 V / cm的电场在7分钟后预测了15 mm设备中的基线分辨率,随着电场的进一步减小,分辨率将呈指数增长。迁移率和分散性数据指出了柱阵列中以前的DNA电泳模型中被忽略的两个基本现象:碰撞之间的弛豫时间以及与多个柱同时碰撞的弛豫时间。

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