SummaryThe branchiomeric skeletal muscles co-evolved with new chambers of the heart to enable predatory feeding in chordates. These co-evolved tissues develop from a common population in anterior splanchnic mesoderm, referred to as cardiopharyngeal mesoderm (CPM). The regulation and development of CPM are poorly understood. We describe an embryonic stem cell-based system in which MESP1 drives a PDGFRA+ population with dual cardiac and skeletal muscle differentiation potential, and gene expression resembling CPM. Using this system, we investigate the regulation of these bipotent progenitors, and find that cardiac specification is governed by an antagonistic TGFβ-BMP axis, while skeletal muscle specification is enhanced by Rho kinase inhibiti...
International audienceHead muscle progenitors in pharyngeal mesoderm are present in close proximity ...
Regenerative medicine for skeletal and cardiac muscles still constitutes a fascinating and ambitious...
In mammals, the heart arises from the differentiation of 2 sources of multipotent cardiovascular pro...
SummaryThe branchiomeric skeletal muscles co-evolved with new chambers of the heart to enable predat...
The branchiomeric skeletal muscles co-evolved with new chambers of the heart to enable predatory fee...
International audienceBranchiomeric muscles of the head and neck originate in a population of crania...
SummaryMesp1 is regarded as the master regulator of cardiovascular development, initiating the cardi...
Abstract Cardiopharyngeal mesoderm contributes to the formation of the heart and head muscles. Howev...
The heart arises from two sources of mesoderm progenitors, the first (FHF) and the second heart fiel...
SummaryThe heart arises from distinct sources of cardiac progenitors that independently express Mesp...
SummaryIn vertebrates, pluripotent pharyngeal mesoderm progenitors produce the cardiac precursors of...
During embryonic development and embryonic stem (ES) cell differentiation, the different cardiovascu...
Cardiac development arises from two sources of mesoderm progenitors, the first heart field (FHF) and...
Cardiac development arises from two sources of mesoderm progenitors, the first heart field (FHF) and...
SummaryDuring embryonic development, multipotent cardiovascular progenitor cells are specified from ...
International audienceHead muscle progenitors in pharyngeal mesoderm are present in close proximity ...
Regenerative medicine for skeletal and cardiac muscles still constitutes a fascinating and ambitious...
In mammals, the heart arises from the differentiation of 2 sources of multipotent cardiovascular pro...
SummaryThe branchiomeric skeletal muscles co-evolved with new chambers of the heart to enable predat...
The branchiomeric skeletal muscles co-evolved with new chambers of the heart to enable predatory fee...
International audienceBranchiomeric muscles of the head and neck originate in a population of crania...
SummaryMesp1 is regarded as the master regulator of cardiovascular development, initiating the cardi...
Abstract Cardiopharyngeal mesoderm contributes to the formation of the heart and head muscles. Howev...
The heart arises from two sources of mesoderm progenitors, the first (FHF) and the second heart fiel...
SummaryThe heart arises from distinct sources of cardiac progenitors that independently express Mesp...
SummaryIn vertebrates, pluripotent pharyngeal mesoderm progenitors produce the cardiac precursors of...
During embryonic development and embryonic stem (ES) cell differentiation, the different cardiovascu...
Cardiac development arises from two sources of mesoderm progenitors, the first heart field (FHF) and...
Cardiac development arises from two sources of mesoderm progenitors, the first heart field (FHF) and...
SummaryDuring embryonic development, multipotent cardiovascular progenitor cells are specified from ...
International audienceHead muscle progenitors in pharyngeal mesoderm are present in close proximity ...
Regenerative medicine for skeletal and cardiac muscles still constitutes a fascinating and ambitious...
In mammals, the heart arises from the differentiation of 2 sources of multipotent cardiovascular pro...