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The Bioreactor: A Powerful Tool for Large-Scale Culture of Animal Cells

机译:生物反应器:用于动物细胞大规模培养的强大工具

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Bioreactors play a key role in the field of biologies, where they are used for the production of recombi-nant therapeutic proteins by large-scale cultivation of animal cells. There are several types of bioreactors, including stirred-tank, airlift, hollow-fiber, and Rotary Cell Culture System (RCCS) designs. The stirred-tank bioreactor is one of the most commonly used types, and is used both for industrial applications and laboratory research. The RCCS, invented by NASA, is increasingly used in the area of tissue engineering for medical purposes. Important improvements have been made in the design of traditional bioreactors, and new types of bioreactor are also being developed such as Couette-Taylor bioreactor, multifunctional-membrane bioreactor, and shaking bioreactor. Work is also progressing on techniques to improve the performance of bioreactors, including perfusion culture, the use of microcar-riers, and methods of suppressing apoptosis and of monitoring cell growth in real time. Given the demand for the production by animal cells for use in the growing number of clinical applications, further advances in bioreactor technology can be expected during the next few years. Two main goals will be pursued: firstly, to increase output by high density cultivation of animal cells to produce high value protein pharmaceutics or viral vectors for clinical gene therapy; and secondly, to create a three-dimension space similar to that of an in vivo environment to regenerate tissue or organ and to reproduce valuable cells that are hard to culture in the traditional culture system.
机译:生物反应器在生物领域中起着关键作用,在生物领域中,它们用于通过大规模培养动物细胞来生产重组治疗蛋白。生物反应器有几种类型,包括搅拌釜,气浮,中空纤维和旋转细胞培养系统(RCCS)设计。搅拌罐式生物反应器是最常用的类型之一,可用于工业应用和实验室研究。由NASA发明的RCCS被越来越多地用于医疗目的的组织工程领域。传统生物反应器的设计已进行了重要的改进,并且还开发了新型生物反应器,例如Couette-Taylor生物反应器,多功能膜生物反应器和摇动生物反应器。改善生物反应器性能的技术也在不断发展,包括灌注培养,微载体的使用以及抑制凋亡和实时监测细胞生长的方法。鉴于对动物细胞生产以用于越来越多的临床应用的需求,预计在未来几年内生物反应器技术将进一步发展。将追求两个主要目标:首先,通过动物细胞的高密度培养来增加产量,以生产用于临床基因治疗的高价值蛋白药物或病毒载体。其次,创造一个类似于体内环境的三维空间,以再生组织或器官,并繁殖在传统培养系统中难以培养的有价值的细胞。

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