The survival of ischaemic cardiomyocytes after myocardial infarction (MI) depends on the formation of new blood vessels. However, endogenous neovascularization is inefficient and the regulatory pathways directing coronary vessel growth are not well understood. Here we describe three independent regulatory pathways active in coronary vessels during development through analysis of the expression patterns of differentially regulated endothelial enhancers in the heart. The angiogenic VEGFA-MEF2 regulatory pathway is predominantly active in endocardial-derived vessels, whilst SOXF/RBPJ and BMP-SMAD pathways are seen in sinus venosus-derived arterial and venous coronaries, respectively. Although all developmental pathways contribute to post-MI ve...
AIMS: A better understanding of the pathways that regulate regeneration of the coronary vasculature ...
Aims: A better understanding of the pathways that regulate regeneration of the coronary vasculature ...
AIMS: Coronary vasculature formation is a critical event during cardiac development, essential for h...
Restoring blood flow after myocardial infarction (MI) is essential for survival of existing and newl...
Restoring blood flow after myocardial infarction (MI) is essential for survival of existing and newl...
Restoring blood flow after myocardial infarction (MI) is essential for the oxygenation of existing a...
Restoring blood flow after myocardial infarction (MI) is essential for the oxygenation of existing a...
Cardiovascular diseases including coronary artery disease are the leading cause of death worldwide. ...
Background: Recent discoveries have indicated that, in the developing heart, sinus venosus and endoc...
Background: Recent discoveries have indicated that, in the developing heart, sinus venosus and endoc...
As the developing heart grows and the chamber walls thicken, passive diffusion of oxygen and nutrien...
As the developing heart grows and the chamber walls thicken, passive diffusion of oxygen and nutrien...
Cardiovascular diseases are the leading cause of death globally. Especially pathological cardiac hyp...
The process of angiogenesis involves a complex sequence of stimuli and integrated responses, such as...
Formation of the coronary arteries consists of a precisely orchestrated series of morphogenetic and ...
AIMS: A better understanding of the pathways that regulate regeneration of the coronary vasculature ...
Aims: A better understanding of the pathways that regulate regeneration of the coronary vasculature ...
AIMS: Coronary vasculature formation is a critical event during cardiac development, essential for h...
Restoring blood flow after myocardial infarction (MI) is essential for survival of existing and newl...
Restoring blood flow after myocardial infarction (MI) is essential for survival of existing and newl...
Restoring blood flow after myocardial infarction (MI) is essential for the oxygenation of existing a...
Restoring blood flow after myocardial infarction (MI) is essential for the oxygenation of existing a...
Cardiovascular diseases including coronary artery disease are the leading cause of death worldwide. ...
Background: Recent discoveries have indicated that, in the developing heart, sinus venosus and endoc...
Background: Recent discoveries have indicated that, in the developing heart, sinus venosus and endoc...
As the developing heart grows and the chamber walls thicken, passive diffusion of oxygen and nutrien...
As the developing heart grows and the chamber walls thicken, passive diffusion of oxygen and nutrien...
Cardiovascular diseases are the leading cause of death globally. Especially pathological cardiac hyp...
The process of angiogenesis involves a complex sequence of stimuli and integrated responses, such as...
Formation of the coronary arteries consists of a precisely orchestrated series of morphogenetic and ...
AIMS: A better understanding of the pathways that regulate regeneration of the coronary vasculature ...
Aims: A better understanding of the pathways that regulate regeneration of the coronary vasculature ...
AIMS: Coronary vasculature formation is a critical event during cardiac development, essential for h...