Survival rates following myocardial infarction have increased in recent years but current treatments for post-infarction recovery are inadequate and cannot induce regeneration of damaged hearts. Regenerative medicine could provide disease-reversing treatments by harnessing modern concepts in cell and developmental biology. A recently-established paradigm in regenerative medicine is that regeneration of a tissue can be achieved by reactivation of the coordinated developmental processes that originally formed the tissue. In the heart, the epicardium has emerged as an important regulator of cardiac development and reactivation of epicardial developmental processes may provide a means to enable cardiac regeneration. Indeed, in adult mouse heart...
The epicardium plays a key role during cardiac development, homeostasis and repair, and has thus eme...
Cardiovascular disease remains the major cause of mortality, and cardiac cell therapy has recently e...
Cardiovascular regenerative medicine aims to counter muscle loss post ischaemic disease with the ide...
Survival rates following myocardial infarction have increased in recent years but current treatments...
While cardiovascular diseases remain the major worldwide cause of mortality and morbidity, there is ...
The mammalian heart loses its regenerative capacity during early postnatal stages; consequently, ind...
Efficient cardiac regene ration postinfarction (MI) requires the replacement of lost cardiomyocytes,...
The death of cardiac myocytes resulting from myocardial infarction is a major cause of heart failure...
Efficient cardiac regeneration postinfarction (MI) requires the replacement of lost cardiomyocytes, ...
Efficient cardiac regeneration postinfarction (MI) requires the replacement of lost cardiomyocytes, ...
The epicardium is a mesothelial cell layer which contributes to the coronary vessels and myocardium ...
The inability of the human heart to effectively repair itself after acute ischaemic injury has drive...
Whilst lower vertebrate species, such as newt and zebrafish, can regenerate their hearts following s...
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 plays a key role during cardiac development, homeostasis and repair, and has thus eme...
Cardiovascular disease remains the major cause of mortality, and cardiac cell therapy has recently e...
Cardiovascular regenerative medicine aims to counter muscle loss post ischaemic disease with the ide...
Survival rates following myocardial infarction have increased in recent years but current treatments...
While cardiovascular diseases remain the major worldwide cause of mortality and morbidity, there is ...
The mammalian heart loses its regenerative capacity during early postnatal stages; consequently, ind...
Efficient cardiac regene ration postinfarction (MI) requires the replacement of lost cardiomyocytes,...
The death of cardiac myocytes resulting from myocardial infarction is a major cause of heart failure...
Efficient cardiac regeneration postinfarction (MI) requires the replacement of lost cardiomyocytes, ...
Efficient cardiac regeneration postinfarction (MI) requires the replacement of lost cardiomyocytes, ...
The epicardium is a mesothelial cell layer which contributes to the coronary vessels and myocardium ...
The inability of the human heart to effectively repair itself after acute ischaemic injury has drive...
Whilst lower vertebrate species, such as newt and zebrafish, can regenerate their hearts following s...
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 plays a key role during cardiac development, homeostasis and repair, and has thus eme...
Cardiovascular disease remains the major cause of mortality, and cardiac cell therapy has recently e...
Cardiovascular regenerative medicine aims to counter muscle loss post ischaemic disease with the ide...