Muscular dystrophies (MDs) are a group of heterogeneous genetic disorders caused by mutations in the genes encoding the structural components of myofibres. The current state-of-the-art treatment is oligonucleotide-based gene therapy that restores disease-related protein. However, this therapeutic approach has limited efficacy and is unlikely to be curative. While the number of studies focused on cell transplantation therapy has increased in the recent years, this approach remains challenging due to multiple issues related to the efficacy of engrafted cells, source of myogenic cells, and systemic injections. Technical innovation has contributed to overcoming cell source challenges, and in recent studies, a combination of muscle resident stem...
Cell therapy is one promising approach to correct genetic diseases by contributing to tissue regener...
Skeletal muscle tissue engineering is one of the important ways for regenerating functionally defect...
Treating muscle disorders poses several challenges to the rapidly evolving field of regenerative med...
Muscular dystrophies (MDs) are a group of heterogeneous genetic disorders caused by mutations in the...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
The intrinsic regenerative capacity of skeletal muscle makes it an excellent target for cell therapy...
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...
Genetic mutations in muscle structural genes can compromise myofiber integrity, causing repeated mus...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
Cell therapy is one promising approach to correct genetic diseases by contributing to tissue regener...
Cell therapy is one promising approach to correct genetic diseases by contributing to tissue regener...
Treating muscle disorders poses several challenges to the rapidly evolving field of regenerative med...
Mutations in the dystrophin gene cause an X-linked genetic disorder: Duchenne muscular dystrophy (DM...
Background: Muscular dystrophies are characterized by primary wasting of skeletal muscle. Mutations ...
Cell therapy is one promising approach to correct genetic diseases by contributing to tissue regener...
Skeletal muscle tissue engineering is one of the important ways for regenerating functionally defect...
Treating muscle disorders poses several challenges to the rapidly evolving field of regenerative med...
Muscular dystrophies (MDs) are a group of heterogeneous genetic disorders caused by mutations in the...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
The intrinsic regenerative capacity of skeletal muscle makes it an excellent target for cell therapy...
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...
Genetic mutations in muscle structural genes can compromise myofiber integrity, causing repeated mus...
Muscular dystrophies are heritable, heterogeneous neuromuscular disorders and include Duchenne and B...
Cell therapy is one promising approach to correct genetic diseases by contributing to tissue regener...
Cell therapy is one promising approach to correct genetic diseases by contributing to tissue regener...
Treating muscle disorders poses several challenges to the rapidly evolving field of regenerative med...
Mutations in the dystrophin gene cause an X-linked genetic disorder: Duchenne muscular dystrophy (DM...
Background: Muscular dystrophies are characterized by primary wasting of skeletal muscle. Mutations ...
Cell therapy is one promising approach to correct genetic diseases by contributing to tissue regener...
Skeletal muscle tissue engineering is one of the important ways for regenerating functionally defect...
Treating muscle disorders poses several challenges to the rapidly evolving field of regenerative med...