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一种基于灵活的位点特异性整合的杂交表达系统,用于在CHO细胞中对单克隆抗体表达盒进行高通量评估。

A Flexible Hybrid Site-Specific Integration-Based Expression System in CHO Cells for Higher-Throughput Evaluation of Monoclonal Antibody Expression Cassettes.

作者信息

Szkodny Alana C, Lee Kelvin H

机构信息

Department of Chemical and Biomolecular Engineering, University of Delaware, Newark, Delaware, USA.

出版信息

Biotechnol J. 2025 Jan;20(1):e202400520. doi: 10.1002/biot.202400520.

Abstract

The implementation of site-specific integration (SSI) systems in Chinese hamster ovary (CHO) cells for the production of monoclonal antibodies (mAbs) can alleviate concerns associated with production instability and reduce cell line development timelines. SSI cell line performance is driven by the interaction between genomic integration location, clonal background, and the transgene expression cassette, requiring optimization of all three parameters to maximize productivity. Systematic comparison of these parameters has been hindered by SSI platforms involving low-throughput enrichment strategies, such as cell sorting. This study presents a recombinase-mediated cassette exchange (RMCE)-capable SSI system that uses only chemical selection to enrich for transgene-expressing RMCE pools in less than one month. The system was used to compare eight mAb expression cassettes containing two novel genetic regulatory elements, the Azin1 CpG island and the Piggybac transposase 5' terminal repeat, in various orientations to improve the expression of two therapeutic mAbs from two genomic loci. Similar patterns of productivity and mRNA expression were observed across sites and mAbs, and the best performing cassette universally increased mAb productivity by 7- to 11-fold. This flexible system allows for higher-throughput comparison of expression cassettes from a consistent clonal and transcriptional background to optimize RMCE-derived cell lines for industrial production of mAbs.

摘要

在中国仓鼠卵巢(CHO)细胞中实施位点特异性整合(SSI)系统用于生产单克隆抗体(mAb),可以缓解与生产不稳定性相关的担忧,并缩短细胞系开发时间。SSI细胞系的性能受基因组整合位置、克隆背景和转基因表达盒之间相互作用的驱动,需要对所有三个参数进行优化以实现生产力最大化。由于SSI平台涉及低通量富集策略,如细胞分选,这些参数的系统比较受到了阻碍。本研究提出了一种具有重组酶介导的盒式交换(RMCE)能力的SSI系统,该系统仅使用化学选择在不到一个月的时间内富集表达转基因的RMCE库。该系统用于比较八个包含两个新型遗传调控元件(Azin1 CpG岛和Piggybac转座酶5'末端重复序列)的mAb表达盒,这些元件以不同方向排列,以提高来自两个基因组位点的两种治疗性mAb的表达。在不同位点和mAb中观察到了相似的生产力和mRNA表达模式,表现最佳的盒式结构普遍使mAb生产力提高了7至11倍。这种灵活的系统允许在一致的克隆和转录背景下对表达盒进行更高通量的比较,以优化RMCE衍生的细胞系用于mAb的工业生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bec/11747262/efbe19f22129/BIOT-20-e202400520-g004.jpg

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