Department of Biotechnology and Bioprocess Engineering, Faculty of Chemical and Process Engineering, Warsaw University of Technology, Poland.
Microb Cell Fact. 2011 Jun 27;10:50. doi: 10.1186/1475-2859-10-50.
Liquid perfluorochemicals (PFCs) are interesting oxygen carriers in medicine and biotechnology with a high solubility for oxygen. They have been repeatedly used for improving oxygen transfer into prokaryotic and eukaryotic cell cultures, however their application is still limited. Here we show the great benefit of air/oxygen saturated perfluorodecalin (PFD) for high cell density cultivation of Escherichia coli in microwell plates and their positive effect on the soluble production of a correctly folded heterologously expressed alcohol dehydrogenase.
In EnBase(®) cultivations the best effect was seen with PFD saturated with oxygen enriched air (appr. 10 μM oxygen per ml) when PFD was added at the time of induction. In contrast the effect of PFD was negligible when it was added already at the time of inoculation. Optimisation of addition time and content of loaded oxygen into the PFD resulted in an increased the cell density by 40% compared to control cultures, and correspondingly also the product yield increased, demonstrated at the example of a recombinant alcohol dehydrogenase.
PFCs are a valuable additive in miniaturized cell culture formats. For production of recombinant proteins in low cell density shaken cultures the addition of oxygen-enriched PFD makes the process more robust, i.e. a high product yield is not any more limited to a very narrow cell density window during which the induction has to be done. The positive effect of PFD was even more obvious when it was added during high cell density cultures. The effect of the PFD phase depends on the amount of oxygen which is loaded into the PFD and which thus is a matter of optimisation.
液体全氟化合物(PFC)是医学和生物技术中具有高氧气溶解度的有趣氧载体。它们已被反复用于改善原核和真核细胞培养物中的氧气传递,但其应用仍然有限。在这里,我们展示了空气/氧气饱和全氟癸烷(PFD)在微孔板中高密度培养大肠杆菌的巨大益处,以及它们对正确折叠的异源表达的醇脱氢酶的可溶性生产的积极影响。
在 EnBase(®)培养中,当 PFD 在诱导时添加时,用富氧空气饱和的 PFD(约 10 μM 氧气/毫升)效果最佳。相比之下,当 PFD 已经在接种时添加时,PFD 的效果可以忽略不计。优化添加时间和加载到 PFD 中的氧气含量可使细胞密度比对照培养物增加 40%,相应地也增加了产物产量,以重组醇脱氢酶为例。
PFC 是小型化细胞培养中的有价值的添加剂。对于在低细胞密度摇瓶培养中生产重组蛋白,添加富氧 PFD 可使该过程更稳健,即高产物量不再仅限于诱导必须进行的非常窄的细胞密度窗口。当在高密度培养期间添加 PFD 时,其效果更加明显。PFD 相的效果取决于加载到 PFD 中的氧气量,这是一个优化的问题。