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冷冻储存和解冻后药物容器中的蛋白质和溶质分布:理解和定义生物技术工艺开发中冷冻-解冻参数的工具。

Protein and solute distribution in drug substance containers during frozen storage and post-thawing: a tool to understand and define freezing-thawing parameters in biotechnology process development.

机构信息

Biotherapeutics Pharmaceutical Sciences, Pfizer Inc, Chesterfield, MO 63005, USA.

出版信息

Biotechnol Prog. 2011 Mar-Apr;27(2):494-504. doi: 10.1002/btpr.530. Epub 2011 Feb 7.

Abstract

Active pharmaceutical ingredient for biotechnology-based drugs, commonly known as drug substance (DS), is often stored frozen for longer shelf-life. Freezing DS enhances stability by slowing down reaction rates that lead to protein instability, minimizes the risk of microbial growth, and eliminates the risk of transport-related stress. High density polyethylene bottles are commonly used for storing monoclonal antibody DS due to good mechanical stress/strain resistant properties even at low temperatures. Despite the aforementioned advantages for frozen storage of DS, this is not devoid of risks. Proteins are known to undergo ice-water surface denaturation, cryoconcentration, and cold denaturation during freezing. A systematic investigation was performed to better understand the protein and solute distribution along with potential of aggregate formation during freeze and thaw process. A significant solute and protein concentration gradient was observed for both frozen and thawed DS bottles. In case of thawed DS, cryoconcentration was localized in the bottom layer and a linear increase in concentration as a function of liquid depth was observed. On the other hand, for frozen DS, a "bell shaped" cryoconcentration distribution was observed between the bottom layers and centre position. A cryoconcentration of almost three-fold was observed for frozen DS in the most concentrated part when freezing was conducted at -20 and -40 °C and 2.5-fold cryoconcentration was observed in the thawed DS before mixing. The information obtained in this study is critical to design freeze thaw experiments, storage condition determination, and process improvement in manufacturing environment.

摘要

用于生物技术药物的原料药,通常称为药物物质(DS),为了延长保质期,常被冷冻储存。冷冻 DS 通过减缓导致蛋白质不稳定的反应速率来增强稳定性,最大限度地降低微生物生长的风险,并消除与运输相关的应激风险。由于高密度聚乙烯瓶具有良好的抗机械应力/应变特性,即使在低温下也能使用,因此常用于储存单克隆抗体 DS。尽管 DS 的冷冻储存具有上述优势,但也并非没有风险。众所周知,蛋白质在冷冻过程中会发生冰-水表面变性、冷冻浓缩和冷变性。为了更好地了解冷冻和解冻过程中蛋白质和溶质的分布以及聚集形成的潜力,进行了系统的研究。在冷冻和解冻的 DS 瓶中都观察到了显著的溶质和蛋白质浓度梯度。对于解冻的 DS,冷冻浓缩集中在底层,并且观察到浓度随液体深度线性增加。另一方面,对于冷冻的 DS,在底层和中心位置之间观察到“钟形”冷冻浓缩分布。当在-20 和-40°C 下进行冷冻时,冷冻 DS 最浓缩部分的冷冻浓缩度增加了近三倍,在混合前解冻的 DS 中观察到 2.5 倍的冷冻浓缩。本研究获得的信息对于设计冷冻-解冻实验、确定储存条件以及改进制造环境中的工艺非常重要。

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