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Intermolecular Interactions During Ultrafiltration of Pegylated Proteins

机译:聚乙二醇化蛋白超滤过程中的分子间相互作用

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摘要

Recent studies have demonstrated the feasibility of using membrane ultrafiltration for the purification of pegylated proteins; however, the separations have all been performed at relatively low protein concentrations where intermolecular interactions are unimportant. The objective of this study was to examine the behavior at higher PEG concentrations and to develop an appropriate theoretical framework to describe the effects of intermolecular interactions. Ultrafiltration experiments were performed using pegylated α-lactalbumin as a model protein with both neutral and charged composite regenerated cellulose membranes. The transmission of the pegylated a-lactalbumin, PEG, and a-lactalbumin all increase with increasing PEG concentration due to the increase in the solute partition coefficient arising from unfavorable intermolecular interactions in the bulk solution. The experimental results were in good agreement with a simple model that accounts for the change in Gibbs free energy associated with these intermolecular interactions, including the effects of concentration polarization on the local solute concentrations upstream of the membrane. These intermolecular interactions are shown to cause a greater than expected loss of pegylated product in a batch ultrafiltration system, and they alter the yield and purification factor that can be achieved during a diafiltration process to remove unreacted PEG.
机译:最近的研究表明使用膜超滤纯化聚乙二醇化蛋白质的可行性。然而,所有分离都是在相对低的蛋白质浓度下进行的,其中分子间的相互作用并不重要。这项研究的目的是检查较高的PEG浓度下的行为,并开发一个适当的理论框架来描述分子间相互作用的影响。使用聚乙二醇化α-乳清蛋白作为模型蛋白进行了超滤实验,同时具有中性和带电复合再生纤维素膜。聚乙二醇化的α-乳白蛋白,PEG和α-乳白蛋白的传递都随着PEG浓度的增加而增加,这是由于在整体溶液中不利的分子间相互作用导致溶质分配系数的增加。实验结果与一个简单模型非常吻合,该模型解释了与这些分子间相互作用相关的吉布斯自由能的变化,包括浓度极化对膜上游局部溶质浓度的影响。这些分子间的相互作用显示在间歇式超滤系统中造成聚乙二醇化产物的损失大于预期,并且它们改变了在渗滤过程中可以去除未反应的PEG所能达到的产率和纯化因子。

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