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Role of Iron and Sodium Citrate in Animal Protein-Free CHO Cell Culture Medium on Cell Growth and Monoclonal Antibody Production

机译:柠檬酸铁和钠在无动物蛋白CHO细胞培养基中对细胞生长和单克隆抗体产生的作用

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Chemically defined iron compounds were investigated for the development of animal protein-free cell culture media to support growth of CHO cells and production of monoclonal antibodies (mAb). Using a multivessel approach of 96-well plates, shake flasks, and bio-reactors, we identified iron and its chemical partner citrate as critical components for maintenance of continuous cell growth and mAb production. The optimized iron concentration range was determined to be 0.1-0.5 mM and that for citrate 0.125-1 mM. This complete formulation is able to maintain cell growth to similar levels as those supplemented with iron compounds alone; however, mAb productivity was enhanced by 30-40% when citrate was present. The addition of sodium citrate (SC) did not affect product quality as determined by size exclusion chromatography, ion exchange chromatography, reversed phase and normal phase-HPLC. No significant changes in glucose and lactate profiles, amino acid utilization, or mAb heavy and light chain expression ratios were observed. Cellular ATP level was ~30% higher when SC was included suggesting that SC may have a role in enhancing cellular energy content. When cell lysates were analyzed by LC-MS to assess the overall cellular protein profile, we identified that in the SC-containing sample, proteins involved in ribosome formation and protein folding were upregulated, and those functions in protein degradation were downregulated. Taken together, this data demonstrated that iron and citrate combination significantly enhanced mAb production without altering product quality and suggested these compounds had a role in upregulating the protein synthetic machinery to promote protein production.
机译:对化学成分明确的铁化合物进行了研究,以开发无动物蛋白的细胞培养基,以支持CHO细胞的生长和单克隆抗体(mAb)的产生。使用96孔板,摇瓶和生物反应器的多容器方法,我们确定了铁及其柠檬酸盐化学伙伴是维持细胞连续生长和单克隆抗体生产的关键成分。确定铁的最佳浓度范围为0.1-0.5 mM,柠檬酸盐的最佳铁浓度范围为0.125-1 mM。这种完整的配方能够将细胞生长维持在与单独添加铁化合物时相似的水平。但是,当存在柠檬酸盐时,mAb生产率提高了30-40%。通过尺寸排阻色谱法,离子交换色谱法,反相和正相HPLC测定,添加柠檬酸钠(SC)不会影响产品质量。没有观察到葡萄糖和乳酸分布,氨基酸利用率或mAb重链和轻链表达比率的显着变化。当加入SC时,细胞的ATP水平提高了约30%,这表明SC可能在增加细胞能量含量中起作用。当通过LC-MS分析细胞裂解液以评估总体细胞蛋白质谱时,我们发现在含SC的样品中,参与核糖体形成和蛋白质折叠的蛋白质被上调,而那些在蛋白质降解中的功能被下调。综上所述,该数据表明铁和柠檬酸盐的组合在不改变产品质量的情况下显着提高了mAb的产生,并表明这些化合物在上调蛋白质合成机制以促进蛋白质产生中起作用。

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