The use of human mesenchymal stem cells (hMSCs) in regenerative medicine is a potential major advance for the treatment of many medical conditions, especially with the use of allogeneic therapies where the cells from a single donor can be used to treat ailments in many patients. Such cells must be grown attached to surfaces and for large scale production, it is shown that stirred bioreactors containing ~200 μm particles (microcarriers) can provide such a surface. It is also shown that the just suspended condition, agitator speed NJS, provides a satisfactory condition for cell growth by minimizing the specific energy dissipation rate, εT, in the bioreactor whilst still meeting the oxygen demand of the cells. For the cells to be used for ther...
Industry trends in regenerative medicine show an increased need for scalable and closed manufacturin...
The use of hMSCs for allogeneic therapies requiring lot sizes of billions of cells will necessitate ...
The use of hMSCs for allogeneic therapies requiring lot sizes of billions of cells will necessitate ...
The use of human mesenchymal stem cells (hMSCs) in regenerative medicine is a potential major advanc...
The use of human mesenchymal stem cells (hMSCs) in regenerative medicine is a potential major advanc...
The use of human mesenchymal stem cells (hMSCs) in regenerative medicine is a potential major advanc...
The use of human mesenchymal stem cells (hMSCs) in regenerative medicine is a potential major advanc...
The use of human mesenchymal stem cells (hMSCs) in regenerative medicine is a potential major advanc...
Unlike cell culture for biopharmaceuticals, where the product of interest is usually a recombinant p...
In our recent work in different bioreactors up to 2.5L in scale, we have successfully cultured hMSCs...
In our recent work in different bioreactors up to 2.5L in scale, we have successfully cultured hMSCs...
In our recent work in different bioreactors up to 2.5L in scale, we have successfully cultured hMSCs...
For the first time, fully functional human mesenchymal stem cells (hMSCs) have been cultured at the ...
In our recent work in different bioreactors up to 2.5 L in scale, we have successfully cultured hMSC...
The impact of agitation rate and sparged aeration on BM-hMSC expansion in conventional stirred tank ...
Industry trends in regenerative medicine show an increased need for scalable and closed manufacturin...
The use of hMSCs for allogeneic therapies requiring lot sizes of billions of cells will necessitate ...
The use of hMSCs for allogeneic therapies requiring lot sizes of billions of cells will necessitate ...
The use of human mesenchymal stem cells (hMSCs) in regenerative medicine is a potential major advanc...
The use of human mesenchymal stem cells (hMSCs) in regenerative medicine is a potential major advanc...
The use of human mesenchymal stem cells (hMSCs) in regenerative medicine is a potential major advanc...
The use of human mesenchymal stem cells (hMSCs) in regenerative medicine is a potential major advanc...
The use of human mesenchymal stem cells (hMSCs) in regenerative medicine is a potential major advanc...
Unlike cell culture for biopharmaceuticals, where the product of interest is usually a recombinant p...
In our recent work in different bioreactors up to 2.5L in scale, we have successfully cultured hMSCs...
In our recent work in different bioreactors up to 2.5L in scale, we have successfully cultured hMSCs...
In our recent work in different bioreactors up to 2.5L in scale, we have successfully cultured hMSCs...
For the first time, fully functional human mesenchymal stem cells (hMSCs) have been cultured at the ...
In our recent work in different bioreactors up to 2.5 L in scale, we have successfully cultured hMSC...
The impact of agitation rate and sparged aeration on BM-hMSC expansion in conventional stirred tank ...
Industry trends in regenerative medicine show an increased need for scalable and closed manufacturin...
The use of hMSCs for allogeneic therapies requiring lot sizes of billions of cells will necessitate ...
The use of hMSCs for allogeneic therapies requiring lot sizes of billions of cells will necessitate ...