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聚合物几何形状对蛋白-聚乙二醇缀合物相互作用的影响。

Impact of polymer geometry on the interactions of protein-PEG conjugates.

机构信息

Late Stage Pharmaceutical Development, Genentech(+), South San Francisco, CA 94080, United States.

Protein Chemistry, Genentech(+), South San Francisco, CA 94080, United States.

出版信息

Biophys Chem. 2018 May;236:22-30. doi: 10.1016/j.bpc.2017.10.003. Epub 2017 Nov 8.

Abstract

The conjugation of high molecular weight polyethylene glycol (PEG) to an active pharmaceutical ingredient (API) is an attractive strategy for the modification of biophysical and biodistribution properties of the API. Indeed, several therapeutic proteins conjugated to PEG have been safely administered in the clinic. While there have been studies on the configuration of these conjugates in solution, investigations on the impact of PEG geometry on protein-PEG conjugate interactions is limited. In this study, we use dynamic light scattering (DLS), rheology, and small-angle neutron scattering (SANS) to investigate the biophysical solution and interaction behavior of a 50kDa Fab protein attached to either a linear or tetrameric (branched) 40kDa PEG molecule. The hydrodynamic radii, diffusivity, viscosity and pair distance distribution function (PDDF) were obtained for the protein-PEG conjugates in solution. An analysis revealed that interactions between unconjugated proteins were quite attractive, however linear PEG-protein conjugates exhibited net repulsive interactions, similar to that of the unconjugated polymer. Tetramer PEG-protein conjugates on the other hand, exhibited a net weak attractive interaction, indicating a more balanced distribution of repulsive and attractive interaction states. Further analysis of the SANS data using geometric models consistent with the PDDF elucidated the conjugates' equilibrium configuration in solution. Insights gained from measurements and analysis used here can also be useful in predicting how conjugate geometries affect viscosity and aggregation behavior, which are important in determining suitable protein-polymer drug formulations.

摘要

高分子量聚乙二醇(PEG)与活性药物成分(API)的缀合是修饰 API 的物理化学性质和生物分布性质的一种有吸引力的策略。实际上,已经有几种与 PEG 缀合的治疗性蛋白在临床上安全使用。虽然已经有关于这些缀合物在溶液中的构象的研究,但关于 PEG 几何形状对蛋白-PEG 缀合物相互作用的影响的研究是有限的。在这项研究中,我们使用动态光散射(DLS)、流变学和小角中子散射(SANS)来研究 50kDa Fab 蛋白与线性或四聚体(分支)40kDa PEG 分子缀合的生物物理溶液和相互作用行为。在溶液中获得了蛋白-PEG 缀合物的水动力半径、扩散系数、粘度和对距离分布函数(PDDF)。分析表明,未缀合蛋白之间的相互作用非常有吸引力,然而线性 PEG-蛋白缀合物表现出净排斥相互作用,类似于未缀合的聚合物。另一方面,四聚体 PEG-蛋白缀合物表现出净弱吸引相互作用,表明排斥和吸引相互作用状态的分布更加平衡。使用与 PDDF 一致的几何模型对 SANS 数据进行进一步分析,阐明了缀合物在溶液中的平衡构象。这里使用的测量和分析获得的见解也可用于预测缀合几何形状如何影响粘度和聚集行为,这对于确定合适的蛋白-聚合物药物制剂非常重要。

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