首页> 外文期刊>Biophysical Journal >Ultrasonic storage modulus as a novel parameter for analyzing protein-protein interactions in high protein concentration solutions: correlation with static and dynamic light scattering measurements.
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Ultrasonic storage modulus as a novel parameter for analyzing protein-protein interactions in high protein concentration solutions: correlation with static and dynamic light scattering measurements.

机译:超声储能模量作为分析高蛋白质浓度溶液中蛋白质-蛋白质相互作用的新参数:与静态和动态光散射测量的相关性。

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The purpose of this work was to establish ultrasonic storage modulus (G') as a novel parameter for characterizing protein-protein interactions (PPI) in high concentration protein solutions. Using an indigenously developed ultrasonic shear rheometer, G' for 20-120 mg/ml solutions of a monoclonal antibody (IgG(2)), between pH 3.0 and 9.0 at 4 mM ionic strength, was measured at frequency of 10 MHz. Our understanding of ultrasonic rheology indicated decrease in repulsive and increase in attractive PPI with increasing solution pH. To confirm this behavior, dynamic (DLS) and static (SLS) light scattering measurements were conducted in dilute solutions. Due to technical limitations, light scattering measurements could not be conducted in concentrated solutions. Mutual-diffusion coefficient, measured by DLS, increased with IgG(2) concentration at pH 4.0 and this trend reversed as pH was increased to 9.0. Second virial coefficient, measured by SLS, decreased with increasing pH. These observations were consistent with the nature of PPI understood from G' measurements. Ultrasonic rheology, DLS, and SLS measurements were also conducted under conditions of increased ionic strength. The consistency between rheology and light scattering analysis under various solution conditions established the utility of ultrasonic G' measurements as a novel tool for analyzing PPI in high protein concentration systems.
机译:这项工作的目的是建立超声存储模量(G')作为表征高浓度蛋白质溶液中蛋白质-蛋白质相互作用(PPI)的新参数。使用本地开发的超声波剪切流变仪,在10 MHz的频率下,在4 mM离子强度下,在pH 3.0至9.0之间测量20-120 mg / ml单克隆抗体(IgG(2))溶液的G'。我们对超声流变学的理解表明,随着溶液pH值的增加,排斥力降低,有吸引力的PPI增加。为了确认这种行为,在稀溶液中进行了动态(DLS)和静态(SLS)光散射测量。由于技术限制,不能在浓缩溶液中进行光散射测量。通过DLS测量的相互扩散系数随着pH 4.0下IgG(2)浓度的增加而增加,并且随着pH值增加至9.0,这种趋势发生了逆转。通过SLS测量的第二病毒系数随pH的升高而降低。这些观察结果与从G'测量值理解的PPI的性质一致。超声流变学,DLS和SLS测量也在离子强度增加的条件下进行。流变学和光散射分析在各种溶液条件下的一致性确立了超声G'测量的实用性,将其作为分析高蛋白浓度系统中PPI的新型工具。

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