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退火对冷冻干燥过程中治疗性蛋白物理性质的影响。

Effects of annealing on the physical properties of therapeutic proteins during freeze drying process.

机构信息

College of Pharmacy, Dongguk University-Seoul, Goyang, Gyeonggi 410-820, Republic of Korea.

College of Pharmacy, Dongguk University-Seoul, Goyang, Gyeonggi 410-820, Republic of Korea.

出版信息

Int J Biol Macromol. 2018 Feb;107(Pt A):730-740. doi: 10.1016/j.ijbiomac.2017.09.041. Epub 2017 Sep 20.

Abstract

Effects of annealing steps during the freeze drying process on etanercept, model protein, were evaluated using various analytical methods. The annealing was introduced in three different ways depending on time and temperature. Residual water contents of dried cakes varied from 2.91% to 6.39% and decreased when the annealing step was adopted, suggesting that they are directly affected by the freeze drying methods Moreover, the samples were more homogenous when annealing was adopted. Transition temperatures of the excipients (sucrose, mannitol, and glycine) were dependent on the freeze drying steps. Size exclusion chromatography showed that monomer contents were high when annealing was adopted and also they decreased less after thermal storage at 60°C. Dynamic light scattering results exhibited that annealing can be helpful in inhibiting aggregation and that thermal storage of freeze-dried samples preferably induced fragmentation over aggregation. Shift of circular dichroism spectrum and of the contents of etanercept secondary structure was observed with different freeze drying steps and thermal storage conditions. All analytical results suggest that the physicochemical properties of etanercept formulation can differ in response to different freeze drying steps and that annealing is beneficial for maintaining stability of protein and reducing the time of freeze drying process.

摘要

采用多种分析方法评估了冻干过程中退火步骤对依那西普(一种模型蛋白)的影响。根据时间和温度,退火以三种不同的方式引入。干燥蛋糕的残余水分含量从 2.91%降至 6.39%,当采用退火步骤时,这表明它们直接受到冻干方法的影响。此外,采用退火时,样品更加均匀。赋形剂(蔗糖、甘露醇和甘氨酸)的转变温度取决于冻干步骤。尺寸排阻色谱表明,采用退火时单体含量较高,并且在 60°C 热储存后含量下降较少。动态光散射结果表明,退火有助于抑制聚集,并且冻干样品的热储存优选诱导聚集而不是片段化。不同的冻干步骤和热储存条件下,圆二色光谱和依那西普二级结构含量发生了位移。所有分析结果表明,依那西普制剂的物理化学性质可能因不同的冻干步骤而有所不同,而退火有利于维持蛋白质的稳定性并减少冻干过程的时间。

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