Conditionally immortalized human cells are valuable substrates for basic bilogic studies, as well as for the production of specific proteins and for the creation of bioartificial organs. We previously demonstrated that the lentivector-mediated transduction of immortalizing genes into human primary cells is an efficient method for obtaining such cell lines. Here, we used human muscle satellite cells as model targets to examine the impact of the transduced genes on the genotypic and phenotypic characteristics of the immortalized cells. The most commonly used immortalizing gene, the SV40 large T antigen (T-Ag), was extremely efficient at inducing the continuous growth of primary myoblasts, but the resulting cells rapidly accumulated major chro...
Duchenne muscular dystrophy (DMD) is a lethal muscle-wasting disease currently without cure. We inve...
Duchenne Muscular Dystrophy is an X-linked genetic disorder characterised by progressive muscle dege...
We developed different approaches to utilize genetically modified cells and animal models to underst...
Conditionally immortalized human cells are valuable substrates for basic bilogic studies, as well as...
International audienceCultured human myoblasts fail to immortalize following the introduction of tel...
Primary human skeletal muscle cells (hSkMCs) are invaluable tools for deciphering the basic molecula...
International audienceTransferring large or multiple genes into primary human stem/progenitor cells ...
A new conditionally immortal satellite cell-derived cell-line, H2K 2B4, was generated from the H2K(b...
International audienceABSTRACT: BACKGROUND: Investigations into both the pathophysiology and therape...
A new conditionally immortal satellite cell-derived cell-line, H2K 2B4, was generated from the H2K(b...
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...
Duchenne muscular dystrophy (DMD) is a lethal muscle-wasting disease currently without cure. We inve...
Primary human myogenic cells isolated from fetal and adult muscle were infected with a high-titer, M...
Duchenne muscular dystrophy (DMD) is a lethal muscle-wasting disease currently without cure. We inve...
Duchenne Muscular Dystrophy is an X-linked genetic disorder characterised by progressive muscle dege...
We developed different approaches to utilize genetically modified cells and animal models to underst...
Conditionally immortalized human cells are valuable substrates for basic bilogic studies, as well as...
International audienceCultured human myoblasts fail to immortalize following the introduction of tel...
Primary human skeletal muscle cells (hSkMCs) are invaluable tools for deciphering the basic molecula...
International audienceTransferring large or multiple genes into primary human stem/progenitor cells ...
A new conditionally immortal satellite cell-derived cell-line, H2K 2B4, was generated from the H2K(b...
International audienceABSTRACT: BACKGROUND: Investigations into both the pathophysiology and therape...
A new conditionally immortal satellite cell-derived cell-line, H2K 2B4, was generated from the H2K(b...
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...
Duchenne muscular dystrophy (DMD) is a lethal muscle-wasting disease currently without cure. We inve...
Primary human myogenic cells isolated from fetal and adult muscle were infected with a high-titer, M...
Duchenne muscular dystrophy (DMD) is a lethal muscle-wasting disease currently without cure. We inve...
Duchenne Muscular Dystrophy is an X-linked genetic disorder characterised by progressive muscle dege...
We developed different approaches to utilize genetically modified cells and animal models to underst...