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Scale-Down Perfusion Process for Recombinant Protein Expression

机译:重组蛋白表达的缩放灌注过程

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The complexity and expense associated with large-scale perfusion culture systems make them impractical for medium optimization studies involving DOE approaches. We have employed scale-down processes involving shake flask cultures seeded at high density, or at several different densities with daily replacement of the culture media (maintaining a constant cell density). These model systems were used to test effects of media components on growth of recombinant CHO cells expressing a therapeutic proteinwith the ultimate goal being to apply the media modifications to a large-scale perfusion system. Basal media employed were protein-free, chemically defined formulations that were supplemented with various combinations of additives to test effects on cellgrowth and recombinant protein expression. Additives tested included amino acids, vitamins, lipids, growth factors, nucleic acid precursors, iron chelating substances, and trace elements. In addition, the effects of osmolality and ammonium concentrationwere examined. Results suggest that perfusion systems are difficult to model in shake flasks. Several media components showed positive effects in standard batch shake flask culture, but had no effect in simulated perfusion shake flask cultures. Severalmedia components showed positive effects when tested in simulated perfusion shake flask cultures, but had no effect in the larger perfusion system. One possible explanation for the discrepancy in results between the standard batch shake flask cultures, simulated perfusion shake flask cultures and large-scale perfusion system is the accumulation of metabolites and resulting pH shift downward in the shake flask cultures. Batch shake flask cultures have no pH regulation; simulated perfusion shake flask cultures have only limited pH control (when the medium is replaced once each day) while large-scale perfusion cultures have real-time pH control.
机译:与大规模灌注培养系统相关的复杂性和费用使其成为涉及DOE方法的中优化研究的不切实际。我们使用涉及高密度接种的摇瓶培养物或在几种不同密度的摇瓶培养物的缩减过程,或者每天替代培养基(保持恒定细胞密度)。这些模型系统用于测试培养基组分对表达治疗蛋白的重组CHO细胞生长的影响,这些蛋白是最终目标是将介质修改应用于大规模灌注系统。使用的基础培养基是无蛋白质的化学定义的制剂,其补充有添加剂的各种组合,以测试对Cellgrowth和重组蛋白表达的影响。测试的添加剂包括氨基酸,维生素,脂质,生长因子,核酸前体,铁螯合物质和微量元素。此外,检查渗透压和铵浓度的影响。结果表明,灌注系统难以在摇瓶中模拟。几种介质组分在标准批量摇动瓶培养中显示出积极影响,但在模拟灌注搅拌瓶培养物中没有作用。在模拟灌注摇瓶培养物中测试时,几种媒体组分显示出积极效果,但在较大的灌注系统中没有任何影响。在标准批量摇瓶培养物,模拟灌注搅拌瓶培养物和大规模灌注系统之间的结果中的一个可能的解释是代谢物的积累,并在摇动瓶培养物中将pH切换下来。批次摇瓶培养物没有pH调节;模拟灌注摇瓶培养物仅具有限制的pH控制(当培养基每天更换一次时),而大规模灌注培养物具有实时pH控制。

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