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Improved fermentation processes for NS0 cell lines expressing human antibodies and glutamine synthetase

机译:表达人抗体和谷氨酰胺合成酶的NS0细胞系的发酵工艺得到改善

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To meet the increasing requirement for therapeutic antibodies to conduct clinical trials, an enhanced culture medium and fed-batch process was developed for GS-NS0 cell lines. This process was shown to produce high concentrations of monoclonal antibodies for several cell lines expressing different antibodies. Cells were adapted to growth in a glutamine- and serum-free medium containing bovine serum albumin (BSA), cholesterol, and transferrin. A number of amino acids were found to be depleted during cell culture. The concentrations of these amino acids were increased, and further cell culture analyses were performed. This process of cell growth and analysis was repeated over multiple cycles until no depletion was detected. This resulted in an amino acid supplement that was shown to be generic and enhanced antibody productivity up to 5-fold for the three cell lines tested. Transferrin was replaced using tropolone, a lipophilic iron chelator and ferric ammonium citrate. Cell growth was equivalent to that in transferrin-containing medium over the wide ranges tested. A concentrated feed solution, based on the amino acid supplement and the components of the serum-and protein-free supplements, was formulated. Addition of this feed in response to metabolic requirements resulted in a harvest titer a further 2-fold higher than the enhanced culture medium. Harvest antibody titers of up to 600 mg/L were achieved for three cell lines expressing different antibodies, representing an increase of 10-fold over the starting concentrations.
机译:为了满足对治疗性抗体进行临床试验的不断增长的需求,为GS-NS0细胞系开发了一种增强型培养基和补料分批工艺。已显示该过程为表达不同抗体的几种细胞系产生高浓度的单克隆抗体。使细胞适应在含有牛血清白蛋白(BSA),胆固醇和转铁蛋白的无谷氨酰胺和无血清的培养基中生长。发现许多氨基酸在细胞培养过程中被耗尽。这些氨基酸的浓度增加,并进行了进一步的细胞培养分析。在多个循环中重复进行细胞生长和分析的过程,直到未检测到耗尽为止。这产生了一种氨基酸补充剂,该氨基酸补充剂被证明是通用的,并且对于三种测试的细胞系,抗体生产率提高了多达5倍。用托酚酮,亲脂性铁螯合剂和柠檬酸铁铵代替转铁蛋白。在广泛的测试范围内,细胞生长与含转铁蛋白的培养基中的细胞生长相当。根据氨基酸补充剂和不含血清和蛋白质的补充剂的成分配制了浓缩饲料溶液。响应于代谢需求而添加该饲料导致收获效价比增强培养基高2倍。对于表达不同抗体的三种细胞系,收获抗体滴度达到600 mg / L,比起始浓度增加了10倍。

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