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Prediction and analysis of analytical ultracentrifugation experiments for heterogeneous macromolecules and nanoparticles based on Brownian dynamics simulation

机译:基于褐色动力学模拟的非均相大分子和纳米粒子分析超速离心实验的预测与分析

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摘要

In the prediction of sedimentation profiles in analytical ultracentrifugation, the counterflow due to diffusion must be taken into account for a proper analysis of experimental data in the determination of molecular properties. This is usually achieved by numerical solution of the Lamm equation. This paper presents an alternative approach, in which the displacement of the solute in the cell, resulting from the opposite effects of ultracentrifugal force and diffusional drift, is described by Brownian dynamics simulation of the solute particles. The formalism is developed for heterogeneous solutes, composed of several species, and implemented in computational schemes and tools. The accuracy of the procedure is verified by comparison with other methods based on the Lamm equation, and its efficiency is illustrated. The possibilities offered by the Brownian dynamics methods in the determination of solute properties and sample composition are demonstrated.
机译:在分析超离心程图中预测沉降型材中,必须考虑扩散引起的逆流,以便在测定分子特性时进行实验数据的适当分析。 这通常通过LAMM等式的数值解来实现。 本文呈现了一种替代方法,其中溶质颗粒的布朗动力学模拟描述了由超分子力和扩散漂移的相反效果所引起的细胞中溶质的位移。 形式主义是为异质溶质而开发的,由几种物种组成,并在计算方案和工具中实施。 通过与基于LAMM等式的其他方法比较来验证程序的准确性,并说明其效率。 证明了布朗动力学方法在测定溶质性质和样品组合物中提供的可能性。

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