International audienceCultured human myoblasts fail to immortalize following the introduction of telomerase. The availability of an immortalization protocol for normal human myoblasts would allow one to isolate cellular models from various neuromuscular diseases, thus opening the possibility to develop and test novel therapeutic strategies. The parameters limiting the efficacy of myoblast transfer therapy (MTT) could be assessed in such models. Finally, the presence of an unlimited number of cell divisions, and thus the ability to clone cells after experimental manipulations, reduces the risks of insertional mutagenesis by many orders of magnitude. This opportunity for genetic modification provides an approach for creating a universal donor...
Duchenne Muscular Dystrophy (DMD) is a genetic disorder which is caused by mutations in the dystroph...
A new conditionally immortal satellite cell-derived cell-line, H2K 2B4, was generated from the H2K(b...
Skeletal muscle represents up to 40% of the total body mass, making this tissue one of the most impo...
International audienceCultured human myoblasts fail to immortalize following the introduction of tel...
International audienceABSTRACT: BACKGROUND: Investigations into both the pathophysiology and therape...
Primary human skeletal muscle cells (hSkMCs) are invaluable tools for deciphering the basic molecula...
grantor: University of TorontoProgressive muscle wasting in Duchenne muscular dystrophy (D...
Conditionally immortalized human cells are valuable substrates for basic bilogic studies, as well as...
Abstract Background A hallmark of muscular dystrophies is the replacement of muscle by connective ti...
Background: Investigations into both the pathophysiology and therapeutic targets in muscle dystrophi...
Background: hTERT/cdk4 immortalized myogenic human cell lines represent an important tool for skelet...
International audienceTransferring large or multiple genes into primary human stem/progenitor cells ...
Duchenne Muscular Dystrophy (DMD) is a genetic disorder which is caused by mutations in the dystroph...
A new conditionally immortal satellite cell-derived cell-line, H2K 2B4, was generated from the H2K(b...
Skeletal muscle represents up to 40% of the total body mass, making this tissue one of the most impo...
International audienceCultured human myoblasts fail to immortalize following the introduction of tel...
International audienceABSTRACT: BACKGROUND: Investigations into both the pathophysiology and therape...
Primary human skeletal muscle cells (hSkMCs) are invaluable tools for deciphering the basic molecula...
grantor: University of TorontoProgressive muscle wasting in Duchenne muscular dystrophy (D...
Conditionally immortalized human cells are valuable substrates for basic bilogic studies, as well as...
Abstract Background A hallmark of muscular dystrophies is the replacement of muscle by connective ti...
Background: Investigations into both the pathophysiology and therapeutic targets in muscle dystrophi...
Background: hTERT/cdk4 immortalized myogenic human cell lines represent an important tool for skelet...
International audienceTransferring large or multiple genes into primary human stem/progenitor cells ...
Duchenne Muscular Dystrophy (DMD) is a genetic disorder which is caused by mutations in the dystroph...
A new conditionally immortal satellite cell-derived cell-line, H2K 2B4, was generated from the H2K(b...
Skeletal muscle represents up to 40% of the total body mass, making this tissue one of the most impo...