A macrokinetic model is proposed to simulate the growth and metabolism of myeloma cell line in batch and fed-batch cultures. The model describes glycolysis, glutaminolysis, the TCA cycle, respiratory chain, formation of metabolites, as well as cell growth and death. In particular, metabolic shift in the glucose utilization is considered in response to the change of glycolysis rate during the cultivation. A closed loop regulator is introduced to approximate the induction of enzyme pool during lag phase after inoculation. Based on the model, the specific consumption rate of substrate, the specific growth rate, the specific acetyl CoA formation rate as well as the specific oxygen uptake rate are estimated. The specific substrate consumption ra...
First of all, the aim of this paper is to systematically analyze the metabolism of mammalian cell cu...
Recently, the pharmaceutical industry is increasingly focusing on early drug development which comes...
Special Issue on Life System Modeling and Bio-Inspired Computing for LSMS 2007 Copyright © 2008 Else...
A macrokinetic model is proposed to simulate the growth and metabolism of myeloma cell line in batch...
© 2007 Portland Press LtdA macrokinetic model for a myeloma cell line is proposed. The model describ...
A macrokinetic model for a myeloma cell line is proposed. The model describes the dynamic balances o...
A simple kinetic model is developed to describe the dynamic behavior of myeloma cell growth and cell...
A simple kinetic model is developed to describe the dynamic behavior of myeloma cell growth and cell...
A simple kinetic model is developed to describe the dynamic behavior of myeloma cell growth and cell...
Growth profiles of the batch and fed-batch culture of hybridoma cells producing monoclonal antibody ...
A macroscopic model that takes into account phenomena of overflow metabolism within glycolysis and g...
A multi-staged population balance model is proposed to describe the cell cycle dynamics of myeloma c...
Monoclonal antibodies (MAbs) have an expanding market for use in diagnostic and therapeutic applicat...
A novel metabolic model is formulated to simulate Vero cell growth on glucose in fixed-bed bioreacto...
© 2007 American Chemical Society and American Institute of Chemical EngineersA multi-staged populati...
First of all, the aim of this paper is to systematically analyze the metabolism of mammalian cell cu...
Recently, the pharmaceutical industry is increasingly focusing on early drug development which comes...
Special Issue on Life System Modeling and Bio-Inspired Computing for LSMS 2007 Copyright © 2008 Else...
A macrokinetic model is proposed to simulate the growth and metabolism of myeloma cell line in batch...
© 2007 Portland Press LtdA macrokinetic model for a myeloma cell line is proposed. The model describ...
A macrokinetic model for a myeloma cell line is proposed. The model describes the dynamic balances o...
A simple kinetic model is developed to describe the dynamic behavior of myeloma cell growth and cell...
A simple kinetic model is developed to describe the dynamic behavior of myeloma cell growth and cell...
A simple kinetic model is developed to describe the dynamic behavior of myeloma cell growth and cell...
Growth profiles of the batch and fed-batch culture of hybridoma cells producing monoclonal antibody ...
A macroscopic model that takes into account phenomena of overflow metabolism within glycolysis and g...
A multi-staged population balance model is proposed to describe the cell cycle dynamics of myeloma c...
Monoclonal antibodies (MAbs) have an expanding market for use in diagnostic and therapeutic applicat...
A novel metabolic model is formulated to simulate Vero cell growth on glucose in fixed-bed bioreacto...
© 2007 American Chemical Society and American Institute of Chemical EngineersA multi-staged populati...
First of all, the aim of this paper is to systematically analyze the metabolism of mammalian cell cu...
Recently, the pharmaceutical industry is increasingly focusing on early drug development which comes...
Special Issue on Life System Modeling and Bio-Inspired Computing for LSMS 2007 Copyright © 2008 Else...