Biotechnology and Bioengineering · 1992 · 126 citations · 39 references
A Chinese hamster ovary (CHO) cell line expressing recombinant human interferon-gamma (IFN-gamma) was grown under glucose limitation in a chemostate at a constant dilution rate of 0.015 h(-1) with glucose feed concentrations of 2.75 mM and 4.25 mM. The changes in cell concentration that accompanied changes in the glucose feed concentration indicated that the cells were glucose-limited. The cell yield on glucose remained constant, but there was a decline in residual glucose concentration and a reduced lactate yield from glucose in the latter stages of the culture. The consumption rates for many of the essential amino acids were increased later in the culture. The volumetric rate of interferon-gamma production was maintained throughout the course of this culture, indicating that IFN-gamma expression was stable under these conditions. However, the specific rate of IFN-gamma production was significantly lower at the higher glucose feed concentration. Under glucose limitation, the proportion of fully glycosylated IFN-gamma produced by these cells was less than that produced in the early stages of batch cultures. The proportion of fully glycosylated IFN-gamma increased during transient periods of glucose excess, suggesting that the culture environment influences the glycosylation of IFN-gamma.
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A RAPID AND PRECISE METHOD FOR THE DETERMINATION OF UREA
Janet Fawcett, J. E. Scott · Journal of Clinical Pathology · 1960 · 2.8K citations · Full text
Expression of human immune interferon cDNA in E. coli and monkey cells
Patrick W. Gray, David W. M. Leung, Diane Pennica et al. · Nature · 1982 · 699 citations
Michael W. Glacken, Robert J. Fleischaker, Anthony J. Sinskey · Biotechnology and Bioengineering · 1986 · 345 citations
Nutrition, Engineering, Cell Culture +21