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拉曼光谱作为一种过程分析技术,用于研究生物制药的冷冻浓缩过程。

Raman spectroscopy as a process analytical technology to investigate biopharmaceutical freeze concentration processes.

机构信息

Institute of Engineering in Life Sciences, Section IV: Biomolecular Separation Engineering, Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany.

出版信息

Biotechnol Bioeng. 2021 Dec;118(12):4708-4719. doi: 10.1002/bit.27936. Epub 2021 Sep 18.

Abstract

Freezing processes are a well-established unit operation in the biopharmaceutical industry to increase the shelf-life of protein-based drugs. While freezing reduces degradation reaction rates, it may also exert stresses such as freeze concentration. Macroscopic freeze concentration in large-scale freezing processes has been described thoroughly by examination of frozen bulk material, but the transient process leading to such freeze concentration profiles has not been monitored yet for biopharmaceutical solutions. In this study, Raman spectroscopy as a process analytical technology is demonstrated for model formulations containing monoclonal antibodies (mAbs) or bovine serum albumin (BSA) in varying concentrations of sucrose and buffer salts. Therefore, a Raman probe was immersed into a bulk volume at different heights, monitoring the freeze concentration in the liquid phase during the freezing processes. Partial least square regression models were used to quantitatively discriminate between the protein and excipients simultaneously. The freeze concentration profiles were dependend on freezing temperature and formulation with freeze concentrations up to 2.4-fold. Convection currents at the bottom of the freezing container were observed with a maximum height of 1 mm. Furthermore, freeze concentration was correlated with the sucrose concentration in a formulation. Analysis of the freeze concentration slope indicated diffusion from the bottom to the top of the container. In summary, Raman spectroscopy is a valuable tool for process validation of freeze concentration simulations and to overcome scale-dependent challenges.

摘要

冷冻过程是生物制药行业中一种成熟的单元操作,用于延长基于蛋白质的药物的保质期。虽然冷冻可以降低降解反应速率,但它也可能施加如冷冻浓缩等压力。虽然已经通过对冷冻块状材料的检查对大规模冷冻过程中的宏观冷冻浓缩进行了详细描述,但对于生物制药溶液,尚未监测导致这种冷冻浓缩分布的瞬态过程。在这项研究中,拉曼光谱作为一种过程分析技术,用于含有单克隆抗体(mAb)或牛血清白蛋白(BSA)的模型配方,其中蔗糖和缓冲盐的浓度不同。因此,将拉曼探头浸入不同高度的体积中,在冷冻过程中监测液相中的冷冻浓缩。使用偏最小二乘回归模型同时定量区分蛋白质和赋形剂。冷冻浓缩分布取决于冷冻温度和配方,冷冻浓度最高可达 2.4 倍。在冷冻容器的底部观察到了对流电流,最大高度为 1 毫米。此外,冷冻浓缩与配方中的蔗糖浓度相关。对冷冻浓缩斜率的分析表明,从容器底部到顶部存在扩散。总之,拉曼光谱是冷冻浓缩模拟过程验证和克服与规模相关挑战的有价值工具。

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