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在批式培养中,调节存活因子 bcl-2 的过表达可增加 CHO 细胞的活细胞密度,并减少延长固定床培养中的 DNA 释放。

Regulated overexpression of the survival factor bcl-2 in CHO cells increases viable cell density in batch culture and decreases DNA release in extended fixed-bed cultivation.

机构信息

Institute of Biotechnology, ETH Zürich, CH-8093, Zürich, Switzerland.

出版信息

Cytotechnology. 2000 Jan;32(1):45-61. doi: 10.1023/A:1008168522385.

Abstract

Using multicistronic expression technology we generated a stable Chinese hamster ovary (CHO) cell line (MG12) expressing a model secreted heterologous glycoprotein, the secreted form of the human placental alkaline phosphatase (SEAP), and bcl-2, best known as an apoptosis inhibitor, in a tetracycline-repressible dicistronic configuration. In batch cultivations in serum-containing medium, MG12 cells reached twice the final viable cell density when Bcl-2 was overexpressed (in the absence oftetracycline) compared to MG12 populations culturedunder tetracycline-containing conditions (bcl-2repressed). However, bcl-2-expressing MG12 cellsshowed no significant retardation of the decline phasecompared to batch cultures in which the dicistronicexpression unit was repressed.Genetic linkage of bcl-2 expression with the reporter protein SEAP in our multicistronic construct allowed online monitoring of Bcl-2 expression over an extended, multistage fixed-bed bioreactor cultivation. The cloned multicistronic expression unit proved to be stable over a 100 day bioreactor run. CHO MG12 cells in the fixed-bed reactor showed a drastic decrease in the release of DNA into the culture supernatant under conditions of reduced tetracycline (and hencederepressed SEAP and bcl-2 overexpression). This observation indicated enhanced robustness associated with bcl-2 overexpression, similar to recent findings for constitutive Bcl-2-overexpressing hybridoma cells under the same bioprocess conditions. These findings indicate, in these serum-containing CHO cell cultures, that overexpression of Bcl-2 results in desirable modifications in culture physiology.

摘要

利用多顺反子表达技术,我们构建了一株稳定的表达模型分泌型异源糖蛋白(人胎盘碱性磷酸酶的分泌型,SEAP)和 bcl-2 的中国仓鼠卵巢(CHO)细胞系(MG12),bcl-2 作为凋亡抑制剂,以四环素可诱导的双顺反子形式表达。在含血清的培养基中进行分批培养时,与在含四环素的条件下(bcl-2 被抑制)培养的 MG12 细胞相比,当 bcl-2 过表达(无四环素)时,MG12 细胞达到的最终活细胞密度提高了一倍。然而,与抑制双顺反子表达单元的批次培养相比,bcl-2 表达的 MG12 细胞在下降阶段没有明显的延迟。在我们的多顺反子构建体中,bcl-2 表达与报告蛋白 SEAP 的遗传连接允许在延长的、多阶段固定床生物反应器培养过程中在线监测 Bcl-2 的表达。在 100 天的生物反应器运行过程中,克隆的多顺反子表达单元被证明是稳定的。在减少四环素的条件下(因此抑制 SEAP 和 bcl-2 的过表达),固定床反应器中的 CHO MG12 细胞在培养上清液中释放的 DNA 急剧减少。这一观察结果表明,与相同生物工艺条件下组成型过表达 Bcl-2 的杂交瘤细胞的最近发现类似,bcl-2 的过表达与增强的稳健性相关。这些发现表明,在这些含血清的 CHO 细胞培养物中,Bcl-2 的过表达导致培养生理发生了理想的改变。

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