This chapter focuses on stem cell-based therapies to treat muscular dystrophy. It reviews previous attempts of cell therapy in animal models and patients by the use of donor myoblasts, explaining the likely reasons for poor clinical results. It also reports the identification of myogenic progenitors in the bone marrow and the related trials, this time in mice only, to treat dystrophy by bone marrow transplantation. It then proceeds to describe recently identified stem/progenitor cells, either resident or able to home in dystrophic muscle and to differentiate into skeletal muscle cells. Different features of the various stem cells are compared in this perspective and the few available examples of their use in preclinical models o...
Duchenne muscular dystrophy (DMD) is a lethal muscle disease for which an effective treatment is urg...
Item does not contain fulltextThe intrinsic regenerative capacity of skeletal muscle makes it an exc...
The intrinsic regenerative capacity of skeletal muscle makes it an excellent target for cell therapy...
This chapter focuses on stem cell-based therapies to treat muscular dystrophy. It reviews previous ...
This chapter focuses on stem cell-based therapies to treat muscular dystrophy. It reviews previous a...
AbstractMuscular dystrophies comprise a heterogeneous group of neuromuscular disorders, characterize...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
AbstractMuscular dystrophies comprise a heterogeneous group of neuromuscular disorders, characterize...
Cell therapy is one promising approach to correct genetic diseases by contributing to tissue regener...
Muscular dystrophies are heterogeneous neuromuscular disorders of inherited origin, including Duchen...
Skeletal muscle tissue engineering is one of the important ways for regenerating functionally defect...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
Understanding stem cell commitment and differentiation is a critical step towards clinical translati...
Understanding stem cell commitment and differentiation is a critical step towards clinical translati...
Duchenne muscular dystrophy (DMD) is a lethal muscle disease for which an effective treatment is urg...
Duchenne muscular dystrophy (DMD) is a lethal muscle disease for which an effective treatment is urg...
Item does not contain fulltextThe intrinsic regenerative capacity of skeletal muscle makes it an exc...
The intrinsic regenerative capacity of skeletal muscle makes it an excellent target for cell therapy...
This chapter focuses on stem cell-based therapies to treat muscular dystrophy. It reviews previous ...
This chapter focuses on stem cell-based therapies to treat muscular dystrophy. It reviews previous a...
AbstractMuscular dystrophies comprise a heterogeneous group of neuromuscular disorders, characterize...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
AbstractMuscular dystrophies comprise a heterogeneous group of neuromuscular disorders, characterize...
Cell therapy is one promising approach to correct genetic diseases by contributing to tissue regener...
Muscular dystrophies are heterogeneous neuromuscular disorders of inherited origin, including Duchen...
Skeletal muscle tissue engineering is one of the important ways for regenerating functionally defect...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
Understanding stem cell commitment and differentiation is a critical step towards clinical translati...
Understanding stem cell commitment and differentiation is a critical step towards clinical translati...
Duchenne muscular dystrophy (DMD) is a lethal muscle disease for which an effective treatment is urg...
Duchenne muscular dystrophy (DMD) is a lethal muscle disease for which an effective treatment is urg...
Item does not contain fulltextThe intrinsic regenerative capacity of skeletal muscle makes it an exc...
The intrinsic regenerative capacity of skeletal muscle makes it an excellent target for cell therapy...