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A Simple Method to Reduce both Lactic Acid and Ammonium Production in Industrial Animal Cell Culture

机译:一种减少工业动物细胞培养中乳酸和铵盐产量的简单方法

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摘要

Fed-batch animal cell culture is the most common method for commercial production of recombinant proteins. However, higher cell densities in these platforms are still limited due to factors such as excessive ammonium production, lactic acid production, nutrient limitation, and/or hyperosmotic stress related to nutrient feeds and base additions to control pH. To partly overcome these factors, we investigated a simple method to reduce both ammonium and lactic acid production—termed Lactate Supplementation and Adaptation (LSA) technology—through the use of CHO cells adapted to a lactate-supplemented medium. Using this simple method, we achieved a reduction of nearly 100% in lactic acid production with a simultaneous 50% reduction in ammonium production in batch shaker flasks cultures. In subsequent fed-batch bioreactor cultures, lactic acid production and base addition were both reduced eight-fold. Viable cell densities of 35 million cells per mL and integral viable cell days of 273 million cell-days per mL were achieved, both among the highest currently reported for a fed-batch animal cell culture. Investigating the benefits of LSA technology in animal cell culture is worthy of further consideration and may lead to process conditions more favorable for advanced industrial applications.
机译:分批补料动物细胞培养是商业上生产重组蛋白的最常用方法。然而,由于诸如过量的铵生产,乳酸生产,营养限制和/或与营养饲料和控制pH的碱添加有关的高渗胁迫等因素,这些平台中较高的细胞密度仍然受到限制。为了部分克服这些因素,我们研究了一种通过使用适应乳酸补充培养基的CHO细胞来减少铵和乳酸产量的简单方法,称为乳酸补充和适应(LSA)技术。使用这种简单的方法,在分批摇瓶培养中,我们将乳酸产量降低了近100%,同时将铵产量降低了50%。在随后的分批补料生物反应器培养中,乳酸产量和碱添加量均降低了八倍。实现了每毫升3500万个细胞的活细胞密度和每毫升2.73亿个细胞天的整体活细胞天数,这都是目前分批补料动物细胞培养中最高的。研究LSA技术在动物细胞培养中的优势值得进一步考虑,并可能导致更适合先进工业应用的工艺条件。

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