Ambrosio F, Ferrari RJ, Fitzgerald GK, Carvell G, Boninger ML, Huard J. Functional overloading of dystrophic mice enhances muscle-derived stem cell contribution to muscle contractile capacity. Arch Phys Med Rehabil. Objectives: To evaluate the effect of functional overloading on the transplantation of muscle derived stem cells (MDSCs) into dystrophic muscle and the ability of transplanted cells to increase dystrophic muscle's ability to resist overloading-induced weakness. Design: Cross-sectional. Setting: Laboratory. Animals: Male mice (N=10) with a dystrophin gene mutation. Interventions: MDSCs were intramuscularly transplanted into the extensor digitorum longus muscle (EDL). Functional overloading of the EDL was performed by surgical abl...
Background: Muscle contusions are common muscle injuries. Although these injuries are capable of hea...
Cellular therapy is a potential approach to improve the regenerative capacity of damaged or diseased...
Skeletal muscle has a remarkable capability of regeneration following injury. Satellite cells, the p...
Ambrosio F, Ferrari RJ, Fitzgerald GK, Carvell G, Boninger ML, Huard J. Functional overloading of dy...
OBJECTIVES: To evaluate the effect of functional overloading on the transplantation of muscle derive...
Stem cell transplantation is a promising potential therapy for muscular dystrophies, but for this pu...
Thesis (Ph.D.)--University of Washington, 2012Cell-based therapies have the potential to contribute ...
Key to advancing stem cell utilization in regenerative medicine and cell-based therapies is the deve...
SCID mouse tibialis anterior muscles were first irradiated to prevent regeneration by host myoblasts...
Understanding stem cell commitment and differentiation is a critical step towards clinical translati...
Skeletal muscle plays an essential role in locomotion, metabolism, and thermoregulation. An intrigui...
Muscular dystrophies (MDs) consist of a genetically heterogeneous group of disorders, recessive or d...
Genetic mutations in muscle structural genes can compromise myofiber integrity, causing repeated mus...
Stem cell transplantation is already in clinical practice for certain genetic diseases and is a prom...
Differentiated muscle fibres can be formed by transplanted haematopoietic stem cells in models of ac...
Background: Muscle contusions are common muscle injuries. Although these injuries are capable of hea...
Cellular therapy is a potential approach to improve the regenerative capacity of damaged or diseased...
Skeletal muscle has a remarkable capability of regeneration following injury. Satellite cells, the p...
Ambrosio F, Ferrari RJ, Fitzgerald GK, Carvell G, Boninger ML, Huard J. Functional overloading of dy...
OBJECTIVES: To evaluate the effect of functional overloading on the transplantation of muscle derive...
Stem cell transplantation is a promising potential therapy for muscular dystrophies, but for this pu...
Thesis (Ph.D.)--University of Washington, 2012Cell-based therapies have the potential to contribute ...
Key to advancing stem cell utilization in regenerative medicine and cell-based therapies is the deve...
SCID mouse tibialis anterior muscles were first irradiated to prevent regeneration by host myoblasts...
Understanding stem cell commitment and differentiation is a critical step towards clinical translati...
Skeletal muscle plays an essential role in locomotion, metabolism, and thermoregulation. An intrigui...
Muscular dystrophies (MDs) consist of a genetically heterogeneous group of disorders, recessive or d...
Genetic mutations in muscle structural genes can compromise myofiber integrity, causing repeated mus...
Stem cell transplantation is already in clinical practice for certain genetic diseases and is a prom...
Differentiated muscle fibres can be formed by transplanted haematopoietic stem cells in models of ac...
Background: Muscle contusions are common muscle injuries. Although these injuries are capable of hea...
Cellular therapy is a potential approach to improve the regenerative capacity of damaged or diseased...
Skeletal muscle has a remarkable capability of regeneration following injury. Satellite cells, the p...