Institute of Applied Biotechnology, University of Applied Sciences Biberach, Hubertus-Liebrecht-Str. 35, 88400 Biberach, Germany.
Institute of Applied Biotechnology, University of Applied Sciences Biberach, Hubertus-Liebrecht-Str. 35, 88400 Biberach, Germany; International Graduate School in Molecular Medicine, Ulm University, Helmholtzstraße 16, 89081 Ulm, Germany.
Biotechnol Adv. 2022 Oct;59:107978. doi: 10.1016/j.biotechadv.2022.107978. Epub 2022 May 13.
Chinese hamster ovary (CHO) cells have been the predominant host for recombinant protein production over the past decades with major efforts directed towards cell line engineering to increase amount and quality of biopharmaceutics. Emerging omics approaches and corresponding techniques now allow an extensive characterization of cellular expression systems. Technical improvements in sequencing, mass spectrometry techniques and focusing on defined cellular subsystems unraveled new possibilities for knowledge-based CHO engineering. We found that spotlighting a defined subset of molecules with certain properties or localization, called sub-omics, can provide a better understanding of the respective cellular subsets, enabling the identification of new engineering targets. In this review, we provide an overview of how recent advances from cellular sub-transcriptomes, sub-proteomes and the secretome analyses were and can be utilized for cell line development.
过去几十年中,中国仓鼠卵巢(CHO)细胞一直是重组蛋白生产的主要宿主,主要致力于通过细胞系工程来提高生物制药的产量和质量。新兴的组学方法和相应的技术现在可以对细胞表达系统进行广泛的描述。测序、质谱技术的技术改进以及对特定细胞子系统的关注,为基于知识的 CHO 工程学开辟了新的可能性。我们发现,聚焦具有特定特性或定位的特定分子子集,称为亚组学,可以更好地了解各个细胞亚群,从而确定新的工程目标。在这篇综述中,我们概述了细胞亚转录组、亚蛋白质组和分泌组分析的最新进展如何以及可以用于细胞系的开发。