With the increasing interest in three-dimensional (3D) cell constructs that better represent native tissues, comes the need to also invest in devices, i.e., bioreactors, that provide a controlled dynamic environment similar to the perfusion mechanism observed in vivo. Here a laboratory-scale fluidized bed bioreactor (sFBB) was designed for hydrogel (i.e., alginate) encapsulated cells to generate a dynamic culture system that produced a homogenous milieu and host substantial biomass for long-term evolution of tissue-like structures and “per cell” performance analysis. The bioreactor design, conceptualized through scale-down empirical similarity rules, was initially validated through computational fluid dynamics analysis for the distributor c...
Human Mesenchymal Stem Cells (hMSCs) are multipotent, immune-privileged, and possess the capacity to...
Human pluripotent stem cells (hPSCs) are required in large numbers for various biomedical applicatio...
The field of tissue engineering aims to provide solutions for the regeneration of organs and tissues...
Objective: Three dimensional cell and tissue culture outcomes depend on mechanical forcesin their en...
The homogeneous expansion behaviour of liquid-fluidized beds is exploited in various fields such as ...
Figure 1 - (a) Pump driven continuous perfusion 3D bioreactor. (b) The 3D bioreactor matrix. (c) Mat...
Dottorato di Ricerca in Scienze ed Ingegneria dell'Ambiente, delle Costruzioni e dell'Energia (SIACE...
Three-dimensional perfusion bioreactors have been shown to enhance cell viability and function throu...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
The application of hydrogels as a matrix for 3-dimensional cell cultures has become an indispensable...
Breakthroughs in health care over the coming decades may well consist of cell based therapeutics, po...
Human mesenchymal stem cells are an ideal candidate for stem cell therapies. They have been research...
Traditionally, cell culture has been done in culture flasks or well plates where the volumes and len...
A conventional 2D (two-dimensional) culture, in T-flasks or multi-well plates, is commonly perfo med...
Human tissues and organs are inherently heterogeneous, and their functionality is determined by the ...
Human Mesenchymal Stem Cells (hMSCs) are multipotent, immune-privileged, and possess the capacity to...
Human pluripotent stem cells (hPSCs) are required in large numbers for various biomedical applicatio...
The field of tissue engineering aims to provide solutions for the regeneration of organs and tissues...
Objective: Three dimensional cell and tissue culture outcomes depend on mechanical forcesin their en...
The homogeneous expansion behaviour of liquid-fluidized beds is exploited in various fields such as ...
Figure 1 - (a) Pump driven continuous perfusion 3D bioreactor. (b) The 3D bioreactor matrix. (c) Mat...
Dottorato di Ricerca in Scienze ed Ingegneria dell'Ambiente, delle Costruzioni e dell'Energia (SIACE...
Three-dimensional perfusion bioreactors have been shown to enhance cell viability and function throu...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
The application of hydrogels as a matrix for 3-dimensional cell cultures has become an indispensable...
Breakthroughs in health care over the coming decades may well consist of cell based therapeutics, po...
Human mesenchymal stem cells are an ideal candidate for stem cell therapies. They have been research...
Traditionally, cell culture has been done in culture flasks or well plates where the volumes and len...
A conventional 2D (two-dimensional) culture, in T-flasks or multi-well plates, is commonly perfo med...
Human tissues and organs are inherently heterogeneous, and their functionality is determined by the ...
Human Mesenchymal Stem Cells (hMSCs) are multipotent, immune-privileged, and possess the capacity to...
Human pluripotent stem cells (hPSCs) are required in large numbers for various biomedical applicatio...
The field of tissue engineering aims to provide solutions for the regeneration of organs and tissues...