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Cell-controlled hybrid perfusion fed-batch CHO cell process provides significant productivity improvement over conventional fed-batch cultures

机译:细胞控制的杂交灌注FED-分批CHO细胞过程可提供常规FED分批培养物的显着生产率改善

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摘要

A simple method originally designed to control lactate accumulation in fed-batch cultures of Chinese Hamster Ovary (CHO) cells has been modified and extended to allow cells in culture to control their own rate of perfusion to precisely deliver nutritional requirements. The method allows for very fast expansion of cells to high density while using a minimal volume of concentrated perfusion medium. When the short-duration cell-controlled perfusion is performed in the production bioreactor and is immediately followed by a conventional fed-batch culture using highly concentrated feeds, the overall productivity of the culture is approximately doubled when compared with a highly optimized state-of-the-art fed-batch process. The technology was applied with near uniform success to five CHO cell processes producing five different humanized monoclonal antibodies. The increases in productivity were due to the increases in sustained viable cell densities. Biotechnol. Bioeng. 2017;114: 1438-1447. (c) 2017 Wiley Periodicals, Inc.
机译:已经修饰并延长了最初设计用于控制中国仓鼠卵巢(CHO)细胞的乳酸盐培养物中乳酸积累的简单方法,以允许培养物中的细胞来控制自己的灌注速率,以精确地提供营养需求。该方法允许细胞的非常快速地扩展到高密度,同时使用最小体积的浓缩灌注介质。当在生产生物反应器中进行短持续细胞控制灌注并且使用高浓饲料立即进行常规的喂食培养物时,与高度优化的状态相比,培养物的整体生产率大致加倍。最艺术喂养的批处理过程。该技术应用于均匀的成功近均匀成功,以产生五种不同人源化单克隆抗体的五种Cho细胞工艺。生产率的增加是由于持续活性细胞密度的增加。 Biotechnol。生物。 2017; 114:1438-1447。 (c)2017 Wiley期刊,Inc。

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