In mammals, the heart arises from the differentiation of 2 sources of multipotent cardiovascular progenitors (MCPs). Different studies indicated that an evolutionary conserved transcriptional regulatory network controls cardiovascular development from flies to humans. Whereas in Drosophila, Tinman acts as a master regulator of cardiac development, the identification of such a master regulator in mammals remained elusive for a long time. In this review, we discuss the recent findings suggesting that Mesp1 acts as a key regulator of cardiovascular progenitors in vertebrates. Lineage tracing in mice demonstrated that Mesp1 represents the earliest marker of cardiovascular progenitors, tracing almost all the cells of the heart including derivati...
The heart arises from two sources of mesoderm progenitors, the first (FHF) and the second heart fiel...
The mammalian heart arises from various populations of Mesp1-expressing cardiovascular progenitors (...
SummaryMesp1 is regarded as the master regulator of cardiovascular development, initiating the cardi...
During embryonic development, multipotent cardiovascular progenitor cells (MCPs) are specified from ...
During embryonic development and embryonic stem (ES) cell differentiation, the different cardiovascu...
SummaryDuring embryonic development, multipotent cardiovascular progenitor cells are specified from ...
During embryonic development, Mesp1 marks the earliest cardiovascular progenitors (CPs) and promotes...
SummaryDuring embryonic development, multipotent cardiovascular progenitor cells are specified from ...
Mouse heart development arises from Mesp1-expressing cardiovascular progenitors (CPs) that are speci...
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...
Cardiac development arises from two sources of mesoderm progenitors, the first heart field (FHF) and...
ES-cell-based cardiovascular repair requires an in-depth understanding of the molecular mechanisms u...
SummaryMesp1 is regarded as the master regulator of cardiovascular development, initiating the cardi...
Mouse heart development arises from Mesp1-expressing cardiovascular progenitors (CPs) that are speci...
The heart arises from two sources of mesoderm progenitors, the first (FHF) and the second heart fiel...
The mammalian heart arises from various populations of Mesp1-expressing cardiovascular progenitors (...
SummaryMesp1 is regarded as the master regulator of cardiovascular development, initiating the cardi...
During embryonic development, multipotent cardiovascular progenitor cells (MCPs) are specified from ...
During embryonic development and embryonic stem (ES) cell differentiation, the different cardiovascu...
SummaryDuring embryonic development, multipotent cardiovascular progenitor cells are specified from ...
During embryonic development, Mesp1 marks the earliest cardiovascular progenitors (CPs) and promotes...
SummaryDuring embryonic development, multipotent cardiovascular progenitor cells are specified from ...
Mouse heart development arises from Mesp1-expressing cardiovascular progenitors (CPs) that are speci...
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...
Cardiac development arises from two sources of mesoderm progenitors, the first heart field (FHF) and...
ES-cell-based cardiovascular repair requires an in-depth understanding of the molecular mechanisms u...
SummaryMesp1 is regarded as the master regulator of cardiovascular development, initiating the cardi...
Mouse heart development arises from Mesp1-expressing cardiovascular progenitors (CPs) that are speci...
The heart arises from two sources of mesoderm progenitors, the first (FHF) and the second heart fiel...
The mammalian heart arises from various populations of Mesp1-expressing cardiovascular progenitors (...
SummaryMesp1 is regarded as the master regulator of cardiovascular development, initiating the cardi...