The differentiation process of murine embryonic stem cells into cardiomyocytes was investigated with a compliant microfluidic platform which allows for versatile cell seeding arrangements, optical observation access, long-term cell viability, and programmable uniaxial cyclic stretch. Specifically, two environmental cues were examined with this platform—culture dimensions and uniaxial cyclic stretch. First, the cardiomyogenic differentiation process, assessed by a GFP reporter driven by the α-MHC promoter, was enhanced in microfluidic devices (µFDs) compared with conventional well-plates. The addition of BMP-2 neutralizing antibody reduced the enhancement observed in the µFDs and the addition of exogenous BMP-2 augmented the cardiomyogenic d...
Heart disease is the leading cause of death in many developing and industrialized countries. The los...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, February 20...
The lack of a fully developed human cardiac model in vitro hampers the progress of many biomedical r...
Ex vivo cardiomyocytes production from pluripotent stem cells is highly attractive as a future clini...
Ex vivo cardiomyocytes production from pluripotent stem cells is highly attractive as a future clini...
Background/Aims: Embryonic stem (ES) cells have got a broad range differentiation potential. The dif...
Human stem cell-derived cells and tissues hold considerable potential for applications in regenerati...
Background/Aims: Embryonic stem (ES) cells have got a broad range differentiation potential. The dif...
AbstractThe development of novel platforms for large scale production of human embryonic stem cells ...
Embryonic stem (ES) cells are pluripotent cells, which can differentiate into any cell type. This ce...
The creation of cardiomyocytes from pluripotent stem cells has the potential to revolutionize the tr...
Embryonic stem (ES) cells are pluripotent cells, which can differentiate into any cell type. This ce...
In order to enhance the differentiation of induced pluripotent cells into cardiomyocytes, we compare...
In the past few years, microfluidic-based technology has developed microscale models recapitulating ...
Heart disease is the leading cause of death in many developing and industrialized countries. The los...
Heart disease is the leading cause of death in many developing and industrialized countries. The los...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, February 20...
The lack of a fully developed human cardiac model in vitro hampers the progress of many biomedical r...
Ex vivo cardiomyocytes production from pluripotent stem cells is highly attractive as a future clini...
Ex vivo cardiomyocytes production from pluripotent stem cells is highly attractive as a future clini...
Background/Aims: Embryonic stem (ES) cells have got a broad range differentiation potential. The dif...
Human stem cell-derived cells and tissues hold considerable potential for applications in regenerati...
Background/Aims: Embryonic stem (ES) cells have got a broad range differentiation potential. The dif...
AbstractThe development of novel platforms for large scale production of human embryonic stem cells ...
Embryonic stem (ES) cells are pluripotent cells, which can differentiate into any cell type. This ce...
The creation of cardiomyocytes from pluripotent stem cells has the potential to revolutionize the tr...
Embryonic stem (ES) cells are pluripotent cells, which can differentiate into any cell type. This ce...
In order to enhance the differentiation of induced pluripotent cells into cardiomyocytes, we compare...
In the past few years, microfluidic-based technology has developed microscale models recapitulating ...
Heart disease is the leading cause of death in many developing and industrialized countries. The los...
Heart disease is the leading cause of death in many developing and industrialized countries. The los...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, February 20...
The lack of a fully developed human cardiac model in vitro hampers the progress of many biomedical r...