Stem cell transplantation is a promising potential therapy for muscular dystrophies, but for this purpose, the cells need to be systemically-deliverable, give rise to many muscle fibres and functionally reconstitute the satellite cell niche in the majority of the patient's skeletal muscles. Human skeletal muscle-derived pericytes have been shown to form muscle fibres after intra-arterial transplantation in dystrophin-deficient host mice. Our aim was to replicate and extend these promising findings. was assayed. Despite minor differences between human mdcs and pericytes, mdscs contributed to muscle regeneration after intra-muscular injection in mdx nu/nu mice, the CD56+ sub-population being especially myogenic. However, in contrast to human ...
Cell-mediated gene therapy is a possible means to treat muscular dystrophies like Duchenne muscular ...
Stem cell transplantation is already in clinical practice for certain genetic diseases and is a prom...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Stem cell transplantation is a promising potential therapy for muscular dystrophies, but for this pu...
Background: Stem cell transplantation is a promising potential therapy for muscular dystrophies, but...
Differentiated muscle fibres can be formed by transplanted haematopoietic stem cells in models of ac...
Differentiated muscle fibres can be formed by transplanted haematopoietic stem cells in models of ac...
SCID mouse tibialis anterior muscles were first irradiated to prevent regeneration by host myoblasts...
We have demonstrated previously that adult human synovial membrane-derived mesenchymal stem cells (h...
Bone marrow (BM) transplantation in mice suggests the existence of pluripotent cells able to differe...
We have demonstrated previously that adult human synovial membrane-derived mesenchymal stem cells (h...
Item does not contain fulltextThe intrinsic regenerative capacity of skeletal muscle makes it an exc...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
SummaryA major obstacle in the application of cell-based therapies for the treatment of neuromuscula...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cell-mediated gene therapy is a possible means to treat muscular dystrophies like Duchenne muscular ...
Stem cell transplantation is already in clinical practice for certain genetic diseases and is a prom...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Stem cell transplantation is a promising potential therapy for muscular dystrophies, but for this pu...
Background: Stem cell transplantation is a promising potential therapy for muscular dystrophies, but...
Differentiated muscle fibres can be formed by transplanted haematopoietic stem cells in models of ac...
Differentiated muscle fibres can be formed by transplanted haematopoietic stem cells in models of ac...
SCID mouse tibialis anterior muscles were first irradiated to prevent regeneration by host myoblasts...
We have demonstrated previously that adult human synovial membrane-derived mesenchymal stem cells (h...
Bone marrow (BM) transplantation in mice suggests the existence of pluripotent cells able to differe...
We have demonstrated previously that adult human synovial membrane-derived mesenchymal stem cells (h...
Item does not contain fulltextThe intrinsic regenerative capacity of skeletal muscle makes it an exc...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
SummaryA major obstacle in the application of cell-based therapies for the treatment of neuromuscula...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...
Cell-mediated gene therapy is a possible means to treat muscular dystrophies like Duchenne muscular ...
Stem cell transplantation is already in clinical practice for certain genetic diseases and is a prom...
Cells derived from blood vessels of human skeletal muscle can regenerate skeletal muscle, similarly ...