Related Experiment Video
Updated: Jul 4, 2026

Saccharomyces cerevisiae Exponential Growth Kinetics in Batch Culture to Analyze Respiratory and Fermentative Metabolism
Published on: September 30, 2018
Impact of dissolved oxygen concentration on some key parameters and production of rhG-CSF in batch fermentation
Dasari V Krishna Rao1, Chatadi T Ramu, Joginapally V Rao
1Research and Development, Biotechnology Division, Natco Research Centre, Hyderabad, 500018, India. nrc@natcopharma.co.in
Abstract:
The impact of different levels of agitation speed, carbondioxide and dissolved oxygen concentration on the key parameters and production of rhG-CSF in Escherichia coli BL21(DE3)PLysS were studied. Lower carbondioxide concentrations as well as higher agitation speeds and dissolved oxygen concentrations led to reduction in the acetate concentrations, and enhanced the cell growth, but inhibited plasmid stability and rhG-CSF expression. Similarly, higher carbondioxide concentrations and lower agitation speeds as well as dissolved oxygen concentrations led to enhanced acetate concentrations, but inhibited the cell growth and protein expression. To address the bottlenecks, a two-stage agitation control strategy (strategy-1) and two-stage dissolved oxygen control strategy (strategy-2) were employed to establish the physiological and metabolic conditions, so as to improve the expression of rhG-CSF. By adopting strategy-1 the yields were improved 1.4-fold over constant speed of 550 rpm, 1.1-fold over constant dissolved oxygen of 45%, respectively. Similarly, using strategy-2 the yields were improved 1.6-fold over constant speed of 550 rpm, 1.3-fold over constant dissolved oxygen of 45%, respectively.
More Related Videos
Related Concept Videos
Bioreactor Controls-II
Bioreactor Controls-I
Batch vs Continuous Culture
Scale-Up Processes
Production of Alcohol
Bioreactor Controls-III

