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首页> 外文期刊>Biotechnology Progress >Development of a low capital investment reactor system: Application forplant cell suspension culture
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Development of a low capital investment reactor system: Application forplant cell suspension culture

机译:低资本投资反应器系统的开发:植物细胞悬浮培养的应用

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Growth of plant cell cultures is demonstrated in an uncontrolled, simple, and inexpensive plastic-lined vessel. Sustained specific growth rates of 0.22 day(-1) for Hyoscyamus muticus cell suspension cultures are achieved in a low-cost gas-sparged bioreactor configuration (6.5 L working volume, wv) which is comparable to an "optimized" 5 L wv mechanically agitated fermenter. In an effort to reduce bioreactor costs, the need for an autoclavable vessel was eliminated. Sterilization is achieved by separate autoclaving of the plastic,liner and by gas-phase sterilization using ethylene oxide. The initial,run sterilized with ethylene oxide displayed a long lag, apparently due to residual sterilant gas. Because ethylene oxide could eliminate costs associated with autoclave rated vessels, a quantitative basis for aeration time was developed by experimental measurements and modeling of diffusion in the polymer liner. Operational techniques to eliminate toxicity are implemented to grow 0.2 kg dry weight of plant cells in 13 days in a 40 L (28.5 L wv) air-lift bioreactor without autoclave sterilization. The biomass yields for all reactors were statistically indistinguishable from shake flask culture.
机译:在不受控制的,简单且便宜的塑料衬里容器中证明了植物细胞培养物的生长。在低成本的气体稀疏生物反应器配置(6.5 L工作容积,wv)下,可实现对Hyoscyamus muticus细胞悬浮培养物的可持续0.22天(-1)的比生长速率,相当于机械搅拌的“优化” 5 L wv发酵罐。为了降低生物反应器成本,消除了对可高压灭菌容器的需求。灭菌是通过分别对塑料内衬进行高压灭菌和使用环氧乙烷进行气相灭菌来实现的。显然,由于残留的消毒气体,用环氧乙烷消毒的初始运行显示出很长的滞后时间。因为环氧乙烷可以消除与高压釜额定容器相关的成本,所以通过实验测量和对聚合物衬里中扩散的建模开发了充气时间的定量基础。实施了消除毒性的操作技术,以在40升(28.5升重)的气举式生物反应器中在13天内生长0.2千克干重的植物细胞,而无需进行高压灭菌。从统计上看,所有反应器的生物量产量与摇瓶培养没有区别。

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