Journal of Biotechnology · 2015 · 53 citations · 36 references
Tissue EngineeringEngineeringBiofabricationCell CultureBiomedical EngineeringBiosensing SystemsBioanalysisNon-woven Matrix-based BioreactorBiochemical EngineeringBioprocess MonitoringCell DensitiesMatrix BiologyIgg Monoclonal AntibodyCho CellsCell EngineeringCell BiologyCellular BioengineeringBiofunctional MaterialBiomanufacturingBioengineering ModelBiotechnologyIn Vitro TechniquesCell SystemsTissue CultureMedicineBiocompatible MaterialBiomedical ApplicationsExtracellular Matrix
Recombinant Chinese Hamster Ovary (CHO) cells producing IgG monoclonal antibody were cultivated in a novel perfusion culture system CellTank, integrating the bioreactor and the cell retention function. In this system, the cells were harbored in a non-woven polyester matrix perfused by the culture medium and immersed in a reservoir. Although adapted to suspension, the CHO cells stayed entrapped in the matrix. The cell-free medium was efficiently circulated from the reservoir into- and through the matrix by a centrifugal pump placed at the bottom of the bioreactor resulting in highly homogenous concentrations of the nutrients and metabolites in the whole system as confirmed by measurements from different sampling locations. A real-time biomass sensor using the dielectric properties of living cells was used to measure the cell density. The performances of the CellTank were studied in three perfusion runs. A very high cell density measured as 200 pF/cm (where 1 pF/cm is equivalent to 1 × 10(6)viable cells/mL) was achieved at a perfusion rate of 10 reactor volumes per day (RV/day) in the first run. In the second run, the effect of cell growth arrest by hypothermia at temperatures lowered gradually from 37 °C to 29 °C was studied during 13 days at cell densities above 100 pF/cm. Finally a production run was performed at high cell densities, where a temperature shift to 31 °C was applied at cell density 100 pF/cm during a production period of 14 days in minimized feeding conditions. The IgG concentrations were comparable in the matrix and in the harvest line in all the runs, indicating no retention of the product of interest. The cell specific productivity was comparable or higher than in Erlenmeyer flask batch culture. During the production run, the final harvested IgG production was 35 times higher in the CellTank compared to a repeated batch culture in the same vessel volume during the same time period.
36
Cell Culture on Artificial Capillaries: An Approach to Tissue Growth in vitro
Richard A. Knazek, Pietro M. Gullino, Peter Köhler et al. · Science · 1972 · 426 citations
Christine Harris, Robert W. Todd, Stephen J. Bungard et al. · Enzyme and Microbial Technology · 1987 · 268 citations
Engineering, Real-time Estimation, Environmental Biotechnology +5
Sung Kwan Yoon, Ji Yong Song, Gyun Min Lee · Biotechnology and Bioengineering · 2003 · 236 citations · Full text