International audienceWe report expression of Pax3, an important regulator of skeletal muscle stem cell behaviour, in the brachial and femoral arteries of adult mice. In these contractile arteries of the limb, but not in the elastic arteries of the trunk, bands of GFP-positive cells were observed in Pax3(GFP/+) mice. Histological and biochemical examination of the vessels, together with clonal analysis after purification of Pax3-GFP-positive cells by flow cytometry, established their vascular smooth muscle identity. These blood-vessel-derived cells do not respond to inducers of other mesodermal cell types, such as bone, however, they can contribute to muscle fibre formation when co-cultured with skeletal muscle cells. This myogenic conversi...
More than 10 years ago, we isolated from mouse embryonic dorsal aorta a population of vessel-associa...
International audienceBACKGROUND: Pax3 is a key upstream regulator of the onset of myogenesis, contr...
SummaryMaintenance of multipotency and how cells exit this state to adopt a specific fate are centra...
International audienceWe report expression of Pax3, an important regulator of skeletal muscle stem c...
Mesenchymal stem cells (MSCs) residing within the bone marrow (BM) differentiate into multiple linea...
Pax3 is an essential myogenic regulator of fetal and embryonic development, but its role in postnata...
The paired-box transcription factor 3 (Pax3), is a powerful myogenic regulatory factor during embryo...
Mesoangioblasts have been characterized as a population of vessel-associated stem cells able to diff...
International audiencePax3 and Foxc2 have been shown genetically to mutually repress each other in t...
Objective - Pax3 and Pax7 are closely related genes that are involved in commitment of cells to a my...
During vertebrate development, successive phases of embryonic and fetal myogenesis lead to the forma...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
Thesis (M.S.)--Boston UniversityCardiac and vascular disease syndromes and abnormalities have long b...
International audienceMaintenance of multipotency and how cells exit this state to adopt a specific ...
Vascular smooth muscle cells (VSMC) are one of the key players in the pathogenesis of cardiovascular...
More than 10 years ago, we isolated from mouse embryonic dorsal aorta a population of vessel-associa...
International audienceBACKGROUND: Pax3 is a key upstream regulator of the onset of myogenesis, contr...
SummaryMaintenance of multipotency and how cells exit this state to adopt a specific fate are centra...
International audienceWe report expression of Pax3, an important regulator of skeletal muscle stem c...
Mesenchymal stem cells (MSCs) residing within the bone marrow (BM) differentiate into multiple linea...
Pax3 is an essential myogenic regulator of fetal and embryonic development, but its role in postnata...
The paired-box transcription factor 3 (Pax3), is a powerful myogenic regulatory factor during embryo...
Mesoangioblasts have been characterized as a population of vessel-associated stem cells able to diff...
International audiencePax3 and Foxc2 have been shown genetically to mutually repress each other in t...
Objective - Pax3 and Pax7 are closely related genes that are involved in commitment of cells to a my...
During vertebrate development, successive phases of embryonic and fetal myogenesis lead to the forma...
The development and regeneration of skeletal muscle is fuelled by muscle stem/progenitor cell biogen...
Thesis (M.S.)--Boston UniversityCardiac and vascular disease syndromes and abnormalities have long b...
International audienceMaintenance of multipotency and how cells exit this state to adopt a specific ...
Vascular smooth muscle cells (VSMC) are one of the key players in the pathogenesis of cardiovascular...
More than 10 years ago, we isolated from mouse embryonic dorsal aorta a population of vessel-associa...
International audienceBACKGROUND: Pax3 is a key upstream regulator of the onset of myogenesis, contr...
SummaryMaintenance of multipotency and how cells exit this state to adopt a specific fate are centra...