Human pluripotent stem cells represent a unique source for cell-based therapies and regenerative medicine. The intrinsic features of these cells such as their easy accessibility and their capacity to be expanded indefinitely overcome some limitations of conventional adult stem cells. Furthermore, the possibility to derive patient-specific induced pluripotent stem (iPS) cells in combination with the current development of gene modification methods could be used for autologous cell therapies of some genetic diseases. In particular, muscular dystrophies are considered to be a good candidate due to the lack of efficacious therapeutic treatments for patients to date, and in view of the encouraging results arising from recent preclinical studies....
Duchenne and Becker muscular dystrophies are the most common muscle diseases and are both currently ...
Transferring large or multiple genes into primary human stem/progenitor cells is challenged by restr...
Pluripotent stem cells [1,2] are well-known for their unique self-renewal and differentiation capabi...
Duchenne muscular dystrophy (DMD) is a rare genetic, progressiveand devastating skeletal and cardiac...
Duchenne muscular dystrophy (DMD) is a rare genetic, progressive and devastating skeletal and cardia...
Understanding stem cell commitment and differentiation is a critical step towards clinical translati...
Genetic mutations in muscle structural genes can compromise myofiber integrity, causing repeated mus...
Item does not contain fulltextThe intrinsic regenerative capacity of skeletal muscle makes it an exc...
The use of adult myogenic stem cells as a cell therapy for skeletal muscle regeneration has been att...
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...
The intrinsic regenerative capacity of skeletal muscle makes it an excellent target for cell therapy...
Human induced pluripotent stem (IPS) cells overcome several disadvantages of human embryonic stem c...
Understanding stem cell commitment and differentiation is a critical step towards clinical translati...
We developed different approaches to utilize genetically modified cells and animal models to underst...
Duchenne and Becker muscular dystrophies are the most common muscle diseases and are both currently ...
Transferring large or multiple genes into primary human stem/progenitor cells is challenged by restr...
Pluripotent stem cells [1,2] are well-known for their unique self-renewal and differentiation capabi...
Duchenne muscular dystrophy (DMD) is a rare genetic, progressiveand devastating skeletal and cardiac...
Duchenne muscular dystrophy (DMD) is a rare genetic, progressive and devastating skeletal and cardia...
Understanding stem cell commitment and differentiation is a critical step towards clinical translati...
Genetic mutations in muscle structural genes can compromise myofiber integrity, causing repeated mus...
Item does not contain fulltextThe intrinsic regenerative capacity of skeletal muscle makes it an exc...
The use of adult myogenic stem cells as a cell therapy for skeletal muscle regeneration has been att...
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...
The intrinsic regenerative capacity of skeletal muscle makes it an excellent target for cell therapy...
Human induced pluripotent stem (IPS) cells overcome several disadvantages of human embryonic stem c...
Understanding stem cell commitment and differentiation is a critical step towards clinical translati...
We developed different approaches to utilize genetically modified cells and animal models to underst...
Duchenne and Becker muscular dystrophies are the most common muscle diseases and are both currently ...
Transferring large or multiple genes into primary human stem/progenitor cells is challenged by restr...
Pluripotent stem cells [1,2] are well-known for their unique self-renewal and differentiation capabi...