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Effect of Electrostatic Interactions on the Ultrafiltration Behavior of Charged Bacterial Capsular Polysaccharides

机译:静电相互作用对带电细菌荚膜多糖超滤行为的影响

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Charged polysaccharides are used in the food industry, as cosmetics, and as vaccines. The viscosity, thermodynamics, and hydrodynamic properties of these charged polysaccharides are known to be strongly dependent on the solution ionic strength because of both inter-and intramolecular electrostatic interactions. The goal of this work was to quantitatively describe the effect of these electrostatic interactions on the ultrafiltration behavior of several charged capsular polysaccharides obtained from Streptococcus pneumoniae and used in the production of Pneumococcus vaccines. Ultrafiltration data were obtained using various Biomax (TM) polyethersulfone membranes with different nominal molecular weight cutoffs. Polysaccharide transmission decreased with decreasing ionic strength primarily because of the expansion of the charged polysaccharide associated with intramolecular electrostatic repulsion. Data were in good agreement with a simple theoretical model based on solute partitioning in porous membranes, with the effective size of the different polysaccharide serotypes evaluated using size exclusion chromatography at the same ionic conditions. These results provide fundamental insights and practical guidelines for exploiting the effects of electrostatic interactions during the ultrafiltration of charged polysaccharides. (C) 2016 American Institute of Chemical Engineers
机译:带电荷的多糖在食品工业中用作化妆品和疫苗。由于分子间和分子内静电相互作用,已知这些带电多糖的粘度,热力学和流体力学性质强烈依赖于溶液的离子强度。这项工作的目的是定量描述这些静电相互作用对从肺炎链球菌获得并用于肺炎球菌疫苗生产的几种带电荷荚膜多糖超滤行为的影响。使用具有不同标称分子量截留值的各种Biomax(TM)聚醚砜膜获得超滤数据。多糖传递随着离子强度的降低而降低,这主要是由于与分子内静电排斥相关的带电多糖的膨胀。数据与基于多孔膜中溶质分配的简单理论模型非常吻合,在相同的离子条件下使用尺寸排阻色谱法评估了不同多糖血清型的有效尺寸。这些结果为利用带电多糖超滤过程中的静电相互作用的影响提供了基本见识和实用指南。 (C)2016美国化学工程师学会

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