In recent times, the study and use of induced pluripotent stem cells (iPSC) have become important in order to avoid the ethical issues surrounding the use of embryonic stem cells. Therapeutic, industrial and research based use of iPSC requires large quantities of cells generated in vitro. Mammalian cells, including pluripotent stem cells, have been expanded using 3D culture, however current limitations have not been overcome to allow a uniform, optimized platform for dynamic culture of pluripotent stem cells to be achieved. In the current work, we have expanded mouse iPSC in a spinner flask using Cytodex 3 microcarriers. We have looked at the effect of agitation on the microcarrier survival and optimized an agitation speed that supports bea...
Improvements to process development technology will have a significant impact in reducing the overal...
This unit describes the routine maintenance and expansion of undifferentiated human embryonic stem c...
Embryonic stem cells (ESCs) are promising as therapeutic material since they are pluripotent (potent...
Optimization of agitation speed in spinner flask for microcarrier structural integrity and expansion...
A major challenge to the clinical success of cell-based tissue engineering strategies is the ability...
We present detailed quantitative measurement analyses for flow in a spinner flask with spinning rate...
Human induced pluripotent stem cells (iPSCs) have numerous applications in drug discovery, drug safe...
Pluripotent stem cells have the unique properties of extensive replication and ability to differenti...
The effects on human mesenchymal stem cell growth of choosing either of two spinner flask impeller g...
Objective: The stirred culture conditions for in vitro expansion process of primary sertoli cells (S...
Running Head: Large-scale expansion of mouse ES cells 2 A large-scale stirred culture system for the...
The success of human pluripotent stem cells (hPSCs) as a source of future cell therapies hinges in p...
The use of human embryonic stem cells (hESCs) for cell-based therapies will require large quantities...
Cell-based therapies have the potential to cure currently incurable diseases by replacing missing or...
BackgroundSertoli cells (SCs) have been described as the 'nurse cells' of the testis whose primary f...
Improvements to process development technology will have a significant impact in reducing the overal...
This unit describes the routine maintenance and expansion of undifferentiated human embryonic stem c...
Embryonic stem cells (ESCs) are promising as therapeutic material since they are pluripotent (potent...
Optimization of agitation speed in spinner flask for microcarrier structural integrity and expansion...
A major challenge to the clinical success of cell-based tissue engineering strategies is the ability...
We present detailed quantitative measurement analyses for flow in a spinner flask with spinning rate...
Human induced pluripotent stem cells (iPSCs) have numerous applications in drug discovery, drug safe...
Pluripotent stem cells have the unique properties of extensive replication and ability to differenti...
The effects on human mesenchymal stem cell growth of choosing either of two spinner flask impeller g...
Objective: The stirred culture conditions for in vitro expansion process of primary sertoli cells (S...
Running Head: Large-scale expansion of mouse ES cells 2 A large-scale stirred culture system for the...
The success of human pluripotent stem cells (hPSCs) as a source of future cell therapies hinges in p...
The use of human embryonic stem cells (hESCs) for cell-based therapies will require large quantities...
Cell-based therapies have the potential to cure currently incurable diseases by replacing missing or...
BackgroundSertoli cells (SCs) have been described as the 'nurse cells' of the testis whose primary f...
Improvements to process development technology will have a significant impact in reducing the overal...
This unit describes the routine maintenance and expansion of undifferentiated human embryonic stem c...
Embryonic stem cells (ESCs) are promising as therapeutic material since they are pluripotent (potent...