Power J, Greenfield P F, Nielsen L, Reid S
Department of Chemical Engineering, University of Queensland, Brisbane, Australia.
Cytotechnology. 1992;9(1-3):149-55. doi: 10.1007/BF02521742.
A mathematical model has been developed to describe the growth and infection of insect cells by recombinant baculoviruses. The model parameters were determined from a series of independent experiments involving batch suspension culture. The profiles generated by the model for cell growth, virus production and protein production agree with those observed in experiments. Presently, the model simulates only systems where cells are not growth-limited. The model is useful in aiding the design and optimization of large-scale systems for production of biological insecticides as well as recombinant proteins and in delineating those areas which are limiting the process and require further, more fundamental, investigation.
已经开发了一个数学模型来描述重组杆状病毒对昆虫细胞的生长和感染。模型参数是通过一系列涉及分批悬浮培养的独立实验确定的。该模型生成的细胞生长、病毒产生和蛋白质产生的曲线与实验中观察到的曲线一致。目前,该模型仅模拟细胞不受生长限制的系统。该模型有助于生物杀虫剂以及重组蛋白大规模生产系统的设计和优化,并有助于确定那些限制该过程且需要进一步进行更基础研究的领域。