首页> 外文期刊>Journal of Biotechnology >Supplementation of serum free media with HT is not sufficient to restore growth properties of DHFR-/- cells in fed-batch processes - Implications for designing novel CHO-based expression platforms
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Supplementation of serum free media with HT is not sufficient to restore growth properties of DHFR-/- cells in fed-batch processes - Implications for designing novel CHO-based expression platforms

机译:用HT补充无血清培养基不足以在分批补料过程中恢复DHFR-/-细胞的生长特性-设计基于CHO的新型表达平台的意义

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DHFR-deficient CHO cells are the most commonly used host cells in the biopharmaceutical industry and over the years, individual substrains have evolved, some have been engineered with improved properties and platform technologies have been designed around them.Unexpectedly, we have observed that different DHFR-deficient CHO cells show only poor growth in fed-batch cultures even in HT supplemented medium, whereas antibody producer cells derived from these hosts achieved least 2-3 fold higher peak cell densities. Using a set of different expression vectors, we were able to show that this impaired growth performance was not due to the selection procedure possibly favouring fast growing clones, but a direct consequence of DHFR deficiency. Re-introduction of the DHFR gene reproducibly restored the growth phenotype to the level of wild-type CHO cells or even beyond which seemed to be dose-dependent.The requirement for a functional DHFR gene to achieve optimal growth under production conditions has direct implications for cell line generation since it suggests that changing to a selection system other than DHFR would require another CHO host which - especially for transgenic CHO strains and tailor-suited process platforms - this could mean significant investments and potential changes in product quality. In these cases, DHFR engineering of the current CHO-DG44 or DuxB11-based host could be an attractive alternative
机译:缺乏DHFR的CHO细胞是生物制药行业中最常用的宿主细胞,多年来,已经进化出了单独的亚菌株,对某些亚菌株进行了工程改造以改善其性能,并围绕它们设计了平台技术。缺乏CHO的细胞即使在添加HT的培养基中,在分批补料培养中也仅表现出较差的生长,而衍生自这些宿主的抗体生产细胞的峰值细胞密度却至少高出2-3倍。使用一组不同的表达载体,我们能够证明这种受损的生长性能不是由于选择程序可能有利于快速生长的克隆,而是DHFR缺乏的直接结果。重新引入DHFR基因可将生长表型恢复到野生型CHO细胞的水平,甚至超过其似乎是剂量依赖性的。对功能性DHFR基因在生产条件下实现最佳生长的要求直接影响了细胞系的产生,因为它暗示着改用除DHFR之外的选择系统将需要另一种CHO宿主,尤其是对于转基因CHO菌株和量身定制的加工平台,这可能意味着大量投资和产品质量的潜在变化。在这些情况下,当前基于CHO-DG44或DuxB11的主机的DHFR工程可能是一个有吸引力的选择

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