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用于抗体生产的无血清发酵工艺的优化。

Optimization of serum-free fermentation processes for antibody production.

作者信息

Büntemeyer H, Lütkemeyer D, Lehmann J

机构信息

Institute for Cell Culture Technique, University of Bielefeld, Germany.

出版信息

Cytotechnology. 1991 Jan;5(1):57-67. doi: 10.1007/BF00365534.

Abstract

Serum free fermentation procedures of cell cultures have got a wide application in production of biochemicals. But, cells cultured in serum free media in general are more sensitive to changes in culture condition, especially to nutrient limitation. There are no substances from serum which can support the cells when conditions are changing. In this study special attention is directed to amino acid utilization of mouse hybridoma in batch, chemostat and perfusion fermentations. Detailed data are presented which show the considerable difference of amino acid consumption rates in different fermentation modes. Already, in batch mode there are differences of the two investigated mouse hybridoma cell lines, although they are derived from the same myeloma line. In chemostat running at a dilution rate representing maximal growth rate most of the consumption rates are significant higher than in batch. On the other hand, in perfusion mode the rates are lower than in batch. This indicates clearly the different conditions of the fermentation modes. Therefore, it is necessary to develop serum free processes under the desired production conditions. An accurate analysis of the process is strongly recommended.

摘要

细胞培养的无血清发酵程序在生物化学品生产中得到了广泛应用。但是,一般来说,在无血清培养基中培养的细胞对培养条件的变化更为敏感,尤其是对营养物质限制。当条件发生变化时,没有血清中的物质可以支持细胞。在本研究中,特别关注了小鼠杂交瘤在分批发酵、恒化器发酵和灌注发酵中对氨基酸的利用情况。给出了详细数据,这些数据显示了不同发酵模式下氨基酸消耗速率的显著差异。在分批发酵模式下,尽管两种被研究的小鼠杂交瘤细胞系源自同一骨髓瘤系,但它们之间也存在差异。在以代表最大生长速率的稀释率运行的恒化器中,大多数消耗速率明显高于分批发酵。另一方面,在灌注发酵模式下,消耗速率低于分批发酵。这清楚地表明了不同发酵模式的条件差异。因此,有必要在期望的生产条件下开发无血清工艺。强烈建议对该工艺进行准确分析。

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