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条件培养基因子对粉纹夜蛾昆虫细胞培养中生产力和细胞生理学的影响。

Effect of conditioned medium factors on productivity and cell physiology in Trichoplusia ni insect cell cultures.

作者信息

Calles Karin, Eriksson Ulrika, Häggström Lena

机构信息

Karo Bio AB, Huddinge, SE-141 57 Huddinge, Sweden.

出版信息

Biotechnol Prog. 2006 May-Jun;22(3):653-9. doi: 10.1021/bp050252+.

Abstract

The influence of conditioned medium (CM) on cell physiology and recombinant protein production in Trichoplusia ni insect cells (T. ni, BTI-Tn-5B1-4) has been investigated. Cell cycle analysis showed that a high proportion of the cell population (80-90%) was in G1 during the whole culture, indicating that the S and G2/M phases are short relative to the G1 phase. Directly after inoculation, a rapid decrease of the S-phase population occurred, which could be observed as a lag-phase. The following increase in the number of cells in S occurred after 7 h of culture for cells in fresh medium, whereas for cells with the addition of CM it occurred at an earlier time point (5 h) and these cells had therefore a shorter lag-phase. The initial changes in the S-phase population were also affected by the inoculum cell density, as higher seeding cell densities resulted in a more rapid increase in the S-phase population after inoculation. These changes in cell cycle distribution were reflected in the cell size, and the CM-cells were smaller than the cells in fresh medium. Recombinant protein production in T. ni cells was improved by the addition of CM. The specific productivity was increased by 30% compared to cells in fresh medium. This beneficial effect was seen between 20 and 72 h of culture. In contrast, the highest specific productivity was obtained already at 7 h for the cells in fresh medium and then decreased rapidly. The total product concentration was around 30% higher in the culture with CM compared to the culture in fresh medium, and the maximum product concentration was obtained on day 2 compared to day 3 for the cells in fresh medium. Our results indicate that the positive effect on productivity by CM is related to its growth-promoting effect, suggesting that the proliferation potential of the culture determines the productivity.

摘要

已研究了条件培养基(CM)对粉纹夜蛾昆虫细胞(粉纹夜蛾,BTI-Tn-5B1-4)的细胞生理学和重组蛋白生产的影响。细胞周期分析表明,在整个培养过程中,很大比例的细胞群体(80-90%)处于G1期,这表明S期和G2/M期相对于G1期较短。接种后立即出现S期细胞群体的快速减少,这可观察为一个滞后期。对于新鲜培养基中的细胞,培养7小时后S期细胞数量开始增加,而对于添加了CM的细胞,在更早的时间点(5小时)就出现了增加,因此这些细胞的滞后期较短。接种时S期细胞群体的初始变化也受接种细胞密度的影响,因为较高的接种细胞密度导致接种后S期细胞群体增加得更快。这些细胞周期分布的变化反映在细胞大小上,添加CM的细胞比新鲜培养基中的细胞小。添加CM可提高粉纹夜蛾细胞中重组蛋白的产量。与新鲜培养基中的细胞相比,比生产率提高了30%。在培养20至72小时之间可看到这种有益效果。相比之下,新鲜培养基中的细胞在7小时时就已获得最高比生产率,然后迅速下降。与新鲜培养基中的培养物相比,添加CM的培养物中总产物浓度高出约30%,新鲜培养基中的细胞在第3天获得最大产物浓度,而添加CM的培养物在第2天就获得了最大产物浓度。我们的结果表明,CM对生产率的积极影响与其促进生长的作用有关,这表明培养物的增殖潜力决定了生产率。

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