Skeletal muscle tissue engineering is one of the important ways for regenerating functionally defective muscles. Among the myopathies, the Duchenne muscular dystrophy (DMD) is a progressive disease due to mutations of the dystrophin gene leading to progressive myofiber degeneration with severe symptoms. Although current therapies in muscular dystrophy are still very challenging, important progress has been made in materials science and in cellular technologies with the use of stem cells. It is therefore useful to review these advances and the results obtained in a clinical point of view. This article focuses on the differentiation of stem cells into myoblasts, and their application in muscular dystrophy. After an overview of the different s...
AbstractMuscular dystrophies comprise a heterogeneous group of neuromuscular disorders, characterize...
Item does not contain fulltextThe intrinsic regenerative capacity of skeletal muscle makes it an exc...
Differentiated muscle fibres can be formed by transplanted haematopoietic stem cells in models of ac...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
Muscular dystrophies are heterogeneous neuromuscular disorders of inherited origin, including Duchen...
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 ...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
This chapter focuses on stem cell-based therapies to treat muscular dystrophy. It reviews previous a...
Skeletal muscle tissue exhibits significant regeneration capacity upon injury or disease. This intrin...
Muscular dystrophies (MDs) are a group of heterogeneous genetic disorders caused by mutations in the...
Muscular dystrophies (MDs) are a group of heterogeneous genetic disorders caused by mutations in the...
Cell therapy is one promising approach to correct genetic diseases by contributing to tissue regener...
Includes bibliographical references (pages 79-92)Duchenne Muscular Dystrophy (DMD) is a devastating ...
AbstractMuscular dystrophies comprise a heterogeneous group of neuromuscular disorders, characterize...
AbstractMuscular dystrophies comprise a heterogeneous group of neuromuscular disorders, characterize...
Item does not contain fulltextThe intrinsic regenerative capacity of skeletal muscle makes it an exc...
Differentiated muscle fibres can be formed by transplanted haematopoietic stem cells in models of ac...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
Muscular dystrophies are heterogeneous neuromuscular disorders of inherited origin, including Duchen...
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 ...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
This chapter focuses on stem cell-based therapies to treat muscular dystrophy. It reviews previous a...
Skeletal muscle tissue exhibits significant regeneration capacity upon injury or disease. This intrin...
Muscular dystrophies (MDs) are a group of heterogeneous genetic disorders caused by mutations in the...
Muscular dystrophies (MDs) are a group of heterogeneous genetic disorders caused by mutations in the...
Cell therapy is one promising approach to correct genetic diseases by contributing to tissue regener...
Includes bibliographical references (pages 79-92)Duchenne Muscular Dystrophy (DMD) is a devastating ...
AbstractMuscular dystrophies comprise a heterogeneous group of neuromuscular disorders, characterize...
AbstractMuscular dystrophies comprise a heterogeneous group of neuromuscular disorders, characterize...
Item does not contain fulltextThe intrinsic regenerative capacity of skeletal muscle makes it an exc...
Differentiated muscle fibres can be formed by transplanted haematopoietic stem cells in models of ac...