Abstract Background Skeletal muscle regeneration is possible thanks to unipotent stem cells, which are satellite cells connected to the myofibers. Populations of stem cells other than muscle-specific satellite cells are considered as sources of cells able to support skeletal muscle reconstruction. Among these are bone marrow-derived mesenchymal stem cells (BM-MSCs), which are multipotent, self-renewing stem cells present in the bone marrow stroma. Available data documenting the ability of BM-MSCs to undergo myogenic differentiation are not definitive. In the current work, we aimed to check if the satellite cell niche could impact the ability of bone marrow-derived cells to follow a myogenic program. Methods We established a new in-vitro met...
The potential clinical use of stem cells for cell transplantation therapies to replace defective gen...
Both skeletal muscle and bone marrow tissue contain myogenic stem cells. The population residing in ...
Bone marrow-derived mesenchymal stem cells (BM-MSCs) are valuable platforms for new therapies based ...
Satellite cells, originating in the embryonic dermamyotome, reside beneath the myofibre of mature ad...
Several reports showed that hematopoietic stem cells (HSCs) participate in muscle regeneration, rais...
Although the contribution of bone marrow-derived cells to regenerating skeletal muscle has been repe...
Murine bone marrow (BM) cells have been shown to undergo myogenic differentiation and participate in...
AbstractAdult bone marrow-derived cells (BMDC) are shown to contribute to muscle tissue in a step-wi...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...
Satellite cells are dormant progenitors located at the periphery of skeletal myofibers that can be t...
Growth and repair of skeletal muscle are normally mediated by the satellite cells that surround musc...
Skeletal muscle regeneration is a complex process, which is not yet completely understood. Satellite...
Bone marrow (BM) transplantation in mice suggests the existence of pluripotent cells able to differe...
Much attention is focused on characterizing the contribution of bone marrow (BM)-derived cells to re...
Bone marrow-derived mesenchymal stem cells (BM-MSCs) are valuable platforms for new therapies based ...
The potential clinical use of stem cells for cell transplantation therapies to replace defective gen...
Both skeletal muscle and bone marrow tissue contain myogenic stem cells. The population residing in ...
Bone marrow-derived mesenchymal stem cells (BM-MSCs) are valuable platforms for new therapies based ...
Satellite cells, originating in the embryonic dermamyotome, reside beneath the myofibre of mature ad...
Several reports showed that hematopoietic stem cells (HSCs) participate in muscle regeneration, rais...
Although the contribution of bone marrow-derived cells to regenerating skeletal muscle has been repe...
Murine bone marrow (BM) cells have been shown to undergo myogenic differentiation and participate in...
AbstractAdult bone marrow-derived cells (BMDC) are shown to contribute to muscle tissue in a step-wi...
AbstractMuscle satellite cells have long been considered a distinct myogenic lineage responsible for...
Satellite cells are dormant progenitors located at the periphery of skeletal myofibers that can be t...
Growth and repair of skeletal muscle are normally mediated by the satellite cells that surround musc...
Skeletal muscle regeneration is a complex process, which is not yet completely understood. Satellite...
Bone marrow (BM) transplantation in mice suggests the existence of pluripotent cells able to differe...
Much attention is focused on characterizing the contribution of bone marrow (BM)-derived cells to re...
Bone marrow-derived mesenchymal stem cells (BM-MSCs) are valuable platforms for new therapies based ...
The potential clinical use of stem cells for cell transplantation therapies to replace defective gen...
Both skeletal muscle and bone marrow tissue contain myogenic stem cells. The population residing in ...
Bone marrow-derived mesenchymal stem cells (BM-MSCs) are valuable platforms for new therapies based ...