Meskova Klaudia, Martonova Katarina, Hrasnova Patricia, Sinska Kristina, Skrabanova Michaela, Fialova Lubica, Njemoga Stefana, Cehlar Ondrej, Parmar Olga, Kolenko Petr, Pevala Vladimir, Skrabana Rostislav
Institute of Neuroimmunology, Slovak Academy of Sciences, 845 10 Bratislava, Slovakia.
Faculty of Natural Sciences, Comenius University, 842 15 Bratislava, Slovakia.
Antibodies (Basel). 2023 Aug 4;12(3):51. doi: 10.3390/antib12030051.
Laboratory production of recombinant mammalian proteins, particularly antibodies, requires an expression pipeline assuring sufficient yield and correct folding with appropriate posttranslational modifications. Transient gene expression (TGE) in the suspension-adapted Chinese Hamster Ovary (CHO) cell lines has become the method of choice for this task. The antibodies can be secreted into the media, which facilitates subsequent purification, and can be glycosylated. However, in general, protein production in CHO cells is expensive and may provide variable outcomes, namely in laboratories without previous experience. While achievable yields may be influenced by the nucleotide sequence, there are other aspects of the process which offer space for optimization, like gene delivery method, cultivation process or expression plasmid design. Polyethylenimine (PEI)-mediated gene delivery is frequently employed as a low-cost alternative to liposome-based methods. In this work, we are proposing a TGE platform for universal medium-scale production of antibodies and other proteins in CHO cells, with a novel expression vector allowing fast and flexible cloning of new genes and secretion of translated proteins. The production cost has been further reduced using recyclable labware. Nine days after transfection, we routinely obtain milligrams of antibody Fabs or human lactoferrin in a 25 mL culture volume. Potential of the platform is established based on the production and crystallization of antibody Fabs and their complexes.
重组哺乳动物蛋白,尤其是抗体的实验室生产,需要一个表达流程来确保足够的产量以及正确的折叠和适当的翻译后修饰。在适应悬浮培养的中国仓鼠卵巢(CHO)细胞系中进行瞬时基因表达(TGE)已成为完成这项任务的首选方法。抗体可以分泌到培养基中,这便于后续的纯化,并且可以进行糖基化修饰。然而,一般来说,在CHO细胞中生产蛋白成本高昂,而且在没有经验的实验室中可能会得到不同的结果。虽然可实现的产量可能受核苷酸序列影响,但该过程的其他方面也有优化空间,如基因递送方法、培养过程或表达质粒设计。聚乙烯亚胺(PEI)介导的基因递送经常被用作基于脂质体方法的低成本替代方案。在这项工作中,我们提出了一个用于在CHO细胞中大规模通用生产抗体和其他蛋白的TGE平台,该平台采用一种新型表达载体,允许快速灵活地克隆新基因并分泌翻译后的蛋白。使用可回收实验器具进一步降低了生产成本。转染九天后,我们通常能在25 mL培养体积中获得数毫克的抗体Fabs或人乳铁蛋白。基于抗体Fabs及其复合物的生产和结晶确定了该平台的潜力。