Grup d'Enginyeria Cel·lular i Bioprocés, Escola d'Enginyeria, Universitat Autònoma de Barcelona, Campus de Bellaterra, Cerdanyola del Vallès, Barcelona, Spain.
Appl Microbiol Biotechnol. 2018 Jan;102(1):165-174. doi: 10.1007/s00253-017-8605-x. Epub 2017 Nov 4.
Transient gene expression (TGE) has been used at small and medium scale for the production of biologicals in sufficient quantities to perform pre-clinical and characterization studies. Polyethyleneimine (PEI)-mediated transfection offers a low toxicity and non-expensive method for cell transfection. DNA and PEI concentration for transient gene expression has been extensively optimized in order to increase product titers. However, the possibility to extrapolate the optimal concentrations found for a specific bioprocess when expression vectors or cell lines need to be changed has not been investigated.In this work, the combination of three different HEK293 cell lines with three different vectors was studied for the production of HIV-1 virus-like particles (VLPs). The concentration of DNA and PEI was optimized for the nine combinations. The obtained results were very similar in all cases (DNA = 2.34 ± 0.18 μg/mL and PEI = 5.81 ± 0.18 μg/mL), revealing that transfection efficiency is not dependent on the cell line or vector type, but on DNA and PEI quantities. Furthermore, two of the cell lines tested stably expressed a protein able to recognize specific origins of replication: HEK293T/SV40 and HEK293E/oriP. Origins of replication were included in the vector sequences in order to test their capacity to increase production titers. HEK293T/SV40 resulted in a decrease of cell density and productivity of 2.3-fold compared to a control plasmid. On the other hand, HEK293E/OriP platform enabled a threefold improvement in HIV-1 VLP production keeping the same cell densities and viabilities compared to a control plasmid.
瞬时基因表达(TGE)已在小规模和中等规模下用于生产足够数量的生物制品,以进行临床前和特征研究。聚乙烯亚胺(PEI)介导的转染为细胞转染提供了一种低毒性和非昂贵的方法。为了提高产物滴度,已经广泛优化了瞬时基因表达的 DNA 和 PEI 浓度。然而,当需要改变表达载体或细胞系时,尚未研究将特定生物工艺中发现的最佳浓度外推的可能性。在这项工作中,研究了三种不同的 HEK293 细胞系与三种不同载体的组合,以生产 HIV-1 病毒样颗粒(VLPs)。优化了这九种组合的 DNA 和 PEI 浓度。在所有情况下,获得的结果都非常相似(DNA=2.34±0.18μg/mL 和 PEI=5.81±0.18μg/mL),这表明转染效率不依赖于细胞系或载体类型,而是取决于 DNA 和 PEI 的数量。此外,测试的两种细胞系稳定表达了一种能够识别特定复制起点的蛋白质:HEK293T/SV40 和 HEK293E/oriP。为了测试它们增加产量的能力,复制起点被包含在载体序列中。HEK293T/SV40 导致细胞密度和生产力比对照质粒降低了 2.3 倍。另一方面,HEK293E/OriP 平台使 HIV-1 VLP 产量提高了三倍,同时保持与对照质粒相同的细胞密度和活力。