A simulation of hybridoma growth and antibody production has been developed. It is capable of simulating all major variables of interest (e.g., specific growth rate, cell yield, sugars and amino acids profile, and antibody yield). This simulation is the most complete reported to date including such factors as cell composition, media composition, substrate and product effects, osmolarity etc. The simulation of a large range of experimental data for hybridomas illustrates that this simulation is a powerful tool in the rational assessment of factors influencing the growth and metabolism of hybridoma cells
A macroscopic model that takes into account phenomena of overflow metabolism within glycolysis and g...
The faithful reproduction and accurate prediction of the phenotypes and emergent behaviors of comple...
The physiology of growth and monoclonal antibody (Mab) production by a murine hybridoma, PQX B1/2, w...
The purpose of this study is to approximate hybridoma growth kinetic model by comparing simulation r...
Growth profiles of the batch and fed-batch culture of hybridoma cells producing monoclonal antibody ...
A detailed, structured animal cell model has a number of interesting potential applications. In this...
Recent advances in computer technology have promoted the design and use of detailed, computer-based ...
Mammalian cell cultures are valuable for synthesis of therapeutic proteins and antibodies. They are ...
Monoclonal Antibodies (MAb) produced by hybridomas have an expanding market for use in diagnostic a...
Monoclonal Antibodies (MAb) produced by hybridomas have an expanding market for use in diagnostic a...
The Cell Simulation provides a software model of a biological cell, based on cell processes and subs...
Batch and fed-batch cultures of a murine hybridoma cell line (AFP-27) were performed in a stirred ta...
Science is an iterative process of experiments and hypotheses. Experiments produce surprising result...
Monoclonal antibodies produced by hybridoma cells are one of the most important products of biotechn...
A generic model of cell growth and division cycles (CELCYMUS) is proposed. It is a one dimensional p...
A macroscopic model that takes into account phenomena of overflow metabolism within glycolysis and g...
The faithful reproduction and accurate prediction of the phenotypes and emergent behaviors of comple...
The physiology of growth and monoclonal antibody (Mab) production by a murine hybridoma, PQX B1/2, w...
The purpose of this study is to approximate hybridoma growth kinetic model by comparing simulation r...
Growth profiles of the batch and fed-batch culture of hybridoma cells producing monoclonal antibody ...
A detailed, structured animal cell model has a number of interesting potential applications. In this...
Recent advances in computer technology have promoted the design and use of detailed, computer-based ...
Mammalian cell cultures are valuable for synthesis of therapeutic proteins and antibodies. They are ...
Monoclonal Antibodies (MAb) produced by hybridomas have an expanding market for use in diagnostic a...
Monoclonal Antibodies (MAb) produced by hybridomas have an expanding market for use in diagnostic a...
The Cell Simulation provides a software model of a biological cell, based on cell processes and subs...
Batch and fed-batch cultures of a murine hybridoma cell line (AFP-27) were performed in a stirred ta...
Science is an iterative process of experiments and hypotheses. Experiments produce surprising result...
Monoclonal antibodies produced by hybridoma cells are one of the most important products of biotechn...
A generic model of cell growth and division cycles (CELCYMUS) is proposed. It is a one dimensional p...
A macroscopic model that takes into account phenomena of overflow metabolism within glycolysis and g...
The faithful reproduction and accurate prediction of the phenotypes and emergent behaviors of comple...
The physiology of growth and monoclonal antibody (Mab) production by a murine hybridoma, PQX B1/2, w...