International audienceIn vertebrates, head and trunk muscles develop from different mesodermal populations and are regulated by distinct genetic networks. Neck muscles at the head-trunk interface remain poorly defined due to their complex morphogenesis and dual mesodermal origins. Here, we use genetically modified mice to establish a 3D model that integrates regulatory genes, cell populations and morphogenetic events that define this transition zone. We show that the evolutionary conserved cucullaris-derived muscles originate from posterior cardiopharyngeal mesoderm, not lateral plate mesoderm, and we define new boundaries for neural crest and mesodermal contributions to neck connective tissue. Furthermore, lineage studies and functional an...
A prerequisite for discovering the properties and therapeutic potential of branchiomeric muscles is ...
International audienceBackground: In vertebrates, the skeletal elements of the jaw, together with th...
SummaryGenetic regulatory networks governing skeletal myogenesis in the body are well understood, ye...
International audienceIn vertebrates, head and trunk muscles develop from different mesodermal popul...
International audienceCardiopharyngeal mesoderm (CPM) gives rise to muscles of the head and heart. U...
In vertebrates, body musculature originates from somites, whereas head muscles originate from the cr...
Neck muscles constitute a transition zone between somite-derived skeletal muscles of the trunk and l...
In vertebrates, body musculature originates from somites, whereas head muscles originate from the cr...
Trunk and head muscles originate from distinct embryonic regions: while the trunk muscles derive fro...
International audienceBranchiomeric muscles of the head and neck originate in a population of crania...
Branchiomeric skeletal muscles are a subset of head muscles originating from skeletal muscle progeni...
International audienceHead muscle progenitors in pharyngeal mesoderm are present in close proximity ...
Abstract Cardiopharyngeal mesoderm contributes to the formation of the heart and head muscles. Howev...
BACKGROUND: In vertebrates, the skeletal elements of the jaw, together with the connective tissues a...
Posté sur BioRxiv le 26 mai 2021How distinct cell fates are manifested by direct lineage ancestry fr...
A prerequisite for discovering the properties and therapeutic potential of branchiomeric muscles is ...
International audienceBackground: In vertebrates, the skeletal elements of the jaw, together with th...
SummaryGenetic regulatory networks governing skeletal myogenesis in the body are well understood, ye...
International audienceIn vertebrates, head and trunk muscles develop from different mesodermal popul...
International audienceCardiopharyngeal mesoderm (CPM) gives rise to muscles of the head and heart. U...
In vertebrates, body musculature originates from somites, whereas head muscles originate from the cr...
Neck muscles constitute a transition zone between somite-derived skeletal muscles of the trunk and l...
In vertebrates, body musculature originates from somites, whereas head muscles originate from the cr...
Trunk and head muscles originate from distinct embryonic regions: while the trunk muscles derive fro...
International audienceBranchiomeric muscles of the head and neck originate in a population of crania...
Branchiomeric skeletal muscles are a subset of head muscles originating from skeletal muscle progeni...
International audienceHead muscle progenitors in pharyngeal mesoderm are present in close proximity ...
Abstract Cardiopharyngeal mesoderm contributes to the formation of the heart and head muscles. Howev...
BACKGROUND: In vertebrates, the skeletal elements of the jaw, together with the connective tissues a...
Posté sur BioRxiv le 26 mai 2021How distinct cell fates are manifested by direct lineage ancestry fr...
A prerequisite for discovering the properties and therapeutic potential of branchiomeric muscles is ...
International audienceBackground: In vertebrates, the skeletal elements of the jaw, together with th...
SummaryGenetic regulatory networks governing skeletal myogenesis in the body are well understood, ye...