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通过控制培养条件提高CHO细胞中单体干扰素-β的产量。

Enhanced production of monomeric interferon-beta by CHO cells through the control of culture conditions.

作者信息

Rodriguez J, Spearman M, Huzel N, Butler M

机构信息

Department of Microbiology, University of Manitoba, Buller Building, Winnipeg, Manitoba R3T 2N2, Canada.

出版信息

Biotechnol Prog. 2005 Jan-Feb;21(1):22-30. doi: 10.1021/bp049807b.

Abstract

The enhancement of recombinant protein expression of a transfected cell line is essential for the development of an efficient large-scale bioprocess. The effect of various media additives and temperature conditions were studied in an attempt to optimize protein production, stability, and protein glycosylation from a Chinese hamster ovary (CHO) cell line producing human beta-interferon (Hu-beta-IFN). We observed a decrease in the ELISA response of the glycoprotein in the later stages of batch cultures, which was attributed to molecular aggregation. Cells were subjected to various concentrations of glycerol, dimethyl sulfoxide (DMSO), and sodium butyrate (NaBu) in a variety of culture systems and conditions. The addition of both NaBu and DMSO resulted in higher specific productivities but reduced growth rates that resulted in a net reduction of interferon produced. Glycerol appeared to stabilize the secreted beta-IFN, resulting in reduced aggregation, despite a decrease in cell growth rate. Glycosylation analysis of isolated beta-IFN showed a time-dependent decrease in sialylation in batch culture that was ameliorated by the presence of glycerol. Low-temperature conditions (30 degrees C) had the greatest effect on productivity with a significant increase in beta-IFN titer as well as a reduction in the degree of molecular aggregation.

摘要

提高转染细胞系的重组蛋白表达水平对于高效大规模生物工艺的开发至关重要。研究了各种培养基添加剂和温度条件的影响,以优化来自生产人β-干扰素(Hu-β-IFN)的中国仓鼠卵巢(CHO)细胞系的蛋白质产量、稳定性和蛋白质糖基化。我们观察到在分批培养后期糖蛋白的ELISA反应下降,这归因于分子聚集。在各种培养系统和条件下,使细胞接触不同浓度的甘油、二甲基亚砜(DMSO)和丁酸钠(NaBu)。添加NaBu和DMSO均导致更高的比生产率,但降低了生长速率,从而导致干扰素产生量的净减少。甘油似乎能稳定分泌的β-干扰素,减少聚集,尽管细胞生长速率有所下降。对分离出的β-干扰素进行糖基化分析表明,分批培养中唾液酸化呈时间依赖性下降,而甘油的存在可改善这种情况。低温条件(30℃)对生产率影响最大,β-干扰素滴度显著增加,分子聚集程度降低。

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