The epicardium plays a key role during cardiac development, homeostasis and repair, and has thus emerged as a potential target in the treatment of cardiovascular disease. However, therapeutically manipulating the epicardium and epicardium-derived cells (EPDCs) requires insights into their developmental origin and the mechanisms driving their activation, recruitment and contribution to both the embryonic and adult injured heart. In recent years, studies of various model systems have provided us with a deeper understanding of the microenvironment in which EPDCs reside and emerge into, of the crosstalk between the multitude of cardiovascular cell types that influence the epicardium, and of the genetic programmes that orchestrate epicardial cel...
The discovery of stem and progenitor cells in the adult mammalian heart has added a vital dimension ...
The proepicardial-derived epicardium covers the myocardium and after a process of epithelial–mesench...
Cardiovascular regenerative medicine aims to counter muscle loss post ischaemic disease with the ide...
The epicardium plays a key role during cardiac development, homeostasis and repair, and has thus eme...
The epicardium is a mesothelial cell layer which contributes to the coronary vessels and myocardium ...
The death of cardiac myocytes resulting from myocardial infarction is a major cause of heart failure...
The mammalian heart loses its regenerative capacity during early postnatal stages; consequently, ind...
Research into potential targets for cardiac repair encompasses recognition of tissue‐resident cells ...
In the last decade, cell replacement therapy has emerged as a potential approach to treat patients s...
The epicardium is an essential cell population during cardiac development. It contributes different ...
Tracing the history of individual cells during embryonic morphogenesis in a structure as complex as ...
AbstractFrom historical studies of developing chick hearts to recent advances in regenerative injury...
From historical studies of developing chick hearts to recent advances in regenerative injury models,...
Embryonic EPDCs are crucial for proper myocardial architecture and coronary vessel formation, both t...
The epicardium is an essential cell population during cardiac development. It contributes different ...
The discovery of stem and progenitor cells in the adult mammalian heart has added a vital dimension ...
The proepicardial-derived epicardium covers the myocardium and after a process of epithelial–mesench...
Cardiovascular regenerative medicine aims to counter muscle loss post ischaemic disease with the ide...
The epicardium plays a key role during cardiac development, homeostasis and repair, and has thus eme...
The epicardium is a mesothelial cell layer which contributes to the coronary vessels and myocardium ...
The death of cardiac myocytes resulting from myocardial infarction is a major cause of heart failure...
The mammalian heart loses its regenerative capacity during early postnatal stages; consequently, ind...
Research into potential targets for cardiac repair encompasses recognition of tissue‐resident cells ...
In the last decade, cell replacement therapy has emerged as a potential approach to treat patients s...
The epicardium is an essential cell population during cardiac development. It contributes different ...
Tracing the history of individual cells during embryonic morphogenesis in a structure as complex as ...
AbstractFrom historical studies of developing chick hearts to recent advances in regenerative injury...
From historical studies of developing chick hearts to recent advances in regenerative injury models,...
Embryonic EPDCs are crucial for proper myocardial architecture and coronary vessel formation, both t...
The epicardium is an essential cell population during cardiac development. It contributes different ...
The discovery of stem and progenitor cells in the adult mammalian heart has added a vital dimension ...
The proepicardial-derived epicardium covers the myocardium and after a process of epithelial–mesench...
Cardiovascular regenerative medicine aims to counter muscle loss post ischaemic disease with the ide...