粘度
脯氨酸
化学
单克隆抗体
还原粘度
分子
小分子
生物物理学
组合化学
抗体
生物化学
有机化学
聚合物
热力学
氨基酸
生物
免疫学
物理
作者
Monika Prašnikar,Matic Proj,Maja Bjelošević Žiberna,Blaž Lebar,Benjamin Knez,Nika Kržišnik,Robert Roškar,Stanislav Gobec,Iztok Grabnar,Aleš Žula,Pegi Ahlin Grabnar
标识
DOI:10.1016/j.ijpharm.2024.124055
摘要
Administration of monoclonal antibodies (mAbs) is currently focused on subcutaneous injection associated with increased patient adherence and reduced treatment cost, leading to sustainable healthcare. The main bottleneck is low volume that can be injected, requiring highly concentrated mAb solutions. The latter results in increased solution viscosity with pronounced mAb aggregation propensity because of intensive protein-protein interactions. Small molecule excipients have been proposed to restrict the protein-protein interactions, contributing to reduced viscosity. The aim of the study was to discover novel compounds that reduce the viscosity of highly concentrated mAb solution. First, the chemical space of proline analogs was explored and 35 compounds were determined. Viscosity measurements revealed that 18 proline analogs reduced the mAb solution viscosity similar to or more than proline. The compounds forming both electrostatic and hydrophobic interactions with mAb reduced the viscosity of the formulation more efficiently without detrimentally effecting mAb physical stability. A correlation between the level of interaction and viscosity-reducing effect was confirmed with molecular dynamic simulations. Structure rigidity of the compounds and aromaticity contributed to their viscosity-reducing effect, dependent on molecule size. The study results highlight the novel proline analogs as an effective approach in viscosity reduction in development of biopharmaceuticals for subcutaneous administration.
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