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Hydrodynamic Analysis of Macromolecular Conformation, A Comparative Study of Flow Field Flow Fractionation and Analytical Ultracentrifugation

机译:大分子构型的流体动力学分析,流场分流与分析超速离心的比较研究

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A study of the retention and separation of several proteins with various geometries from spheres to elongated con-formations and xanthan gum in its rodlike conformation by asymmetrical flow field flow fractionation (aF-FFF) is presented. The obtained data are compared with those from analytical ultracentrifugation (AUC) as a hydrodynamic reference method. The data are discussed within the framework of hydrodynamics and thermodynamics. The results clearly show the failure of FFF to yield the exact geometries of particles differing from spherical shape due to a wrong determined diffusion coefficient for asymmetrical particles. The deviation from the AUC results becomes more pronounced with increasing asymmetry. However, FFF can show a higher resolution than AUC if the samples exhibit a density distribution which is demonstrated for ferritin.
机译:提出了通过不对称流场流动分离法(aF-FFF)保留和分离几种具有各种几何形状的蛋白质的方法,这些蛋白质从球形到细长构型以及黄原胶呈棒状构型。将获得的数据与作为流体动力学参考方法的分析超速离心(AUC)的数据进行比较。在流体力学和热力学的框架内讨论了这些数据。结果清楚地表明,由于错误确定了非对称颗粒的扩散系数,FFF无法产生与球形不同的精确几何形状的颗粒。随着不对称性的增加,与AUC结果的偏差变得更加明显。但是,如果样品显示出针对铁蛋白的密度分布,则FFF可以显示比AUC更高的分辨率。

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