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Effect of cell culture medium components on color of formulated monoclonal antibody drug substance

单克隆抗体 药品 化学 抗体 色谱法 单克隆 药理学 生物 免疫学
作者
Natarajan Vijayasankaran,Sharat Varma,Yi Yang,Melissa Mun,Silvana Arevalo,Martin Gawlitzek,Trevor E. Swartz,Amy Lim,Feng Li,Boyan Zhang,Steve Meier,Róbert Kiss
出处
期刊:Biotechnology Progress [American Chemical Society]
卷期号:29 (5): 1270-1277 被引量:60
标识
DOI:10.1002/btpr.1772
摘要

As the industry moves toward subcutaneous delivery as a preferred route of drug administration, high drug substance concentrations are becoming the norm for monoclonal antibodies. At such high concentrations, the drug substance may display a more intense color than at the historically lower concentrations. The effect of process conditions and/or changes on color is more readily observed in the higher color, high concentration formulations. Since color is a product quality attribute that needs to be controlled, it is useful to study the impact of process conditions and/or modifications on color. This manuscript summarizes cell culture experiments and reports on findings regarding the effect of various media components that contribute to drug substance color for a specific monoclonal antibody. In this work, lower drug substance color was achieved via optimization of the cell culture medium. Specifically, lowering the concentrations of B-vitamins in the cell culture medium has the effect of reducing color intensity by as much as 25%. In addition, decreasing concentration of iron was also directly correlated color intensity decrease of as much as 37%. It was also shown that the color of the drug substance directly correlates with increased acidic variants, especially when increased iron levels cause increased color. Potential mechanisms that could lead to antibody coloration are briefly discussed.
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