Terminally differentiated murine osteocytes and adipocytes can be reprogrammed using platelet-derived growth factor–AB and 5-azacytidine into multipotent stem cells with stromal cell characteristics. We have now optimized culture conditions to reprogram human adipocytes into induced multipotent stem (iMS) cells and characterized their molecular and functional properties. Although the basal transcriptomes of adipocyte-derived iMS cells and adipose tissue–derived mesenchymal stem cells were similar, there were changes in histone modifications and CpG methylation at cis-regulatory regions consistent with an epigenetic landscape that was primed for tissue development and differentiation. In a non-specific tissue injury xenograft model, iMS cell...
Regenerative capacity of skeletal muscles resides in satellite cells, a self-renewing population of ...
Mesenchymal stem cells thanks to their differentiated multipotent ability are considered the most pr...
BACKGROUND AND OBJECTIVES: Mesenchymal stem/progenitor cells (MSCs) are multipotent progenitors that...
Current trends in regenerative medicine for tissue repair focus on generating tissue-specific stem c...
Current approaches in tissue engineering are geared toward generating tissue-specific stem cells. Gi...
Adipose Derived Stem Cells (ADSCs) are multipotent mesenchymal stem cells that reside in the microva...
In contrast to cold blooded vertebrates, the ability to regenerate morphologically and functionally ...
Current approaches in tissue engineering are geared toward generating tissue-specific stem cells. Gi...
Human mesenchymal stem cells (hMSCs) are considered a promising cell source for regenerative medicin...
Stem cells are undifferentiated cells that have the capability to differentiate into one or more cel...
BACKGROUND AND METHODS: In this study, we utilized a combination of low oxygen tension and a novel a...
Abstract Background Mesenchymal stem cells (MSCs) possess intrinsic regeneration capacity as part of...
Skeletal muscle is the most abundant human tissue; therefore, an unlimited availability of myogenic ...
The emerging field of tissue engineering and regenerative medicine is a multidisciplinary science th...
Mesenchymal stem cells (MSCs), are multipotent stem cells that can differentiate into osteoblasts, c...
Regenerative capacity of skeletal muscles resides in satellite cells, a self-renewing population of ...
Mesenchymal stem cells thanks to their differentiated multipotent ability are considered the most pr...
BACKGROUND AND OBJECTIVES: Mesenchymal stem/progenitor cells (MSCs) are multipotent progenitors that...
Current trends in regenerative medicine for tissue repair focus on generating tissue-specific stem c...
Current approaches in tissue engineering are geared toward generating tissue-specific stem cells. Gi...
Adipose Derived Stem Cells (ADSCs) are multipotent mesenchymal stem cells that reside in the microva...
In contrast to cold blooded vertebrates, the ability to regenerate morphologically and functionally ...
Current approaches in tissue engineering are geared toward generating tissue-specific stem cells. Gi...
Human mesenchymal stem cells (hMSCs) are considered a promising cell source for regenerative medicin...
Stem cells are undifferentiated cells that have the capability to differentiate into one or more cel...
BACKGROUND AND METHODS: In this study, we utilized a combination of low oxygen tension and a novel a...
Abstract Background Mesenchymal stem cells (MSCs) possess intrinsic regeneration capacity as part of...
Skeletal muscle is the most abundant human tissue; therefore, an unlimited availability of myogenic ...
The emerging field of tissue engineering and regenerative medicine is a multidisciplinary science th...
Mesenchymal stem cells (MSCs), are multipotent stem cells that can differentiate into osteoblasts, c...
Regenerative capacity of skeletal muscles resides in satellite cells, a self-renewing population of ...
Mesenchymal stem cells thanks to their differentiated multipotent ability are considered the most pr...
BACKGROUND AND OBJECTIVES: Mesenchymal stem/progenitor cells (MSCs) are multipotent progenitors that...