Embryonic stem (ES) cells are pluripotent cells, which can differentiate into any cell type. This cell type has often been implicated as an eminent source of renewable cells for tissue regeneration and cellular replacement therapies. Studies on manipulation of the various differentiation pathways have been at the forefront of research. There are many ways in which ES cells can be differentiated. One of the most common techniques is to initiate the development of embryoid bodies (EBs) by in vitro aggregation of ES cells. Thereafter, EBs can be induced to undergo differentiation into various cell lineages. In this article, we present a microfluidic platform using biocompatible materials, which is suitable for culturing EBs. The platform is ba...
An integrative approach based on microfluidic design and stem cell biology enables capture of the sp...
: An integrative approach based on microfluidic design and stem cell biology enables capture of the ...
: An integrative approach based on microfluidic design and stem cell biology enables capture of the ...
Embryonic stem (ES) cells are pluripotent cells, which can differentiate into any cell type. This ce...
Embryonic stem (ES) cells are pluripotent cells, which can differentiate into any cell types. This c...
The unlimited proliferative and differentiative capacities of embryonic stem cells (ESCs) are tightl...
We have developed a multi-layer, microfluidic array platform containing concave microwells and flat ...
Directed differentiation of embryonic stem (ES) cells is useful for creating models of human disease...
With significant potential as a robust source to produce specific somatic cells for regenerative med...
With significant potential as a robust source to produce specific somatic cells for regenerative med...
Directed embryonic stem (ES) cell differentiation is a potentially powerful approach for generating ...
Embryonic stem (ES) cells hold great potential as a renewable cell source for regenerative medicine ...
The differentiation process of murine embryonic stem cells into cardiomyocytes was investigated with...
Stem cell technology and embryonic stem cell models are of great interest in biomedical research sin...
Conventional culture systems are often limited in their ability to regulate the growth and different...
An integrative approach based on microfluidic design and stem cell biology enables capture of the sp...
: An integrative approach based on microfluidic design and stem cell biology enables capture of the ...
: An integrative approach based on microfluidic design and stem cell biology enables capture of the ...
Embryonic stem (ES) cells are pluripotent cells, which can differentiate into any cell type. This ce...
Embryonic stem (ES) cells are pluripotent cells, which can differentiate into any cell types. This c...
The unlimited proliferative and differentiative capacities of embryonic stem cells (ESCs) are tightl...
We have developed a multi-layer, microfluidic array platform containing concave microwells and flat ...
Directed differentiation of embryonic stem (ES) cells is useful for creating models of human disease...
With significant potential as a robust source to produce specific somatic cells for regenerative med...
With significant potential as a robust source to produce specific somatic cells for regenerative med...
Directed embryonic stem (ES) cell differentiation is a potentially powerful approach for generating ...
Embryonic stem (ES) cells hold great potential as a renewable cell source for regenerative medicine ...
The differentiation process of murine embryonic stem cells into cardiomyocytes was investigated with...
Stem cell technology and embryonic stem cell models are of great interest in biomedical research sin...
Conventional culture systems are often limited in their ability to regulate the growth and different...
An integrative approach based on microfluidic design and stem cell biology enables capture of the sp...
: An integrative approach based on microfluidic design and stem cell biology enables capture of the ...
: An integrative approach based on microfluidic design and stem cell biology enables capture of the ...