In contrast to mammals, lower vertebrates are capable of extraordinary myocardial regeneration thanks to the ability of their cardiomyocytes to undergo transient dedifferentiation and proliferation. Somatic cells can be temporarily reprogrammed to a proliferative, dedifferentiated state through forced expression of Oct3/4, Sox2, Klf4 and c-Myc (OSKM). Here, we aimed to induce transient reprogramming of mammalian cardiomyocytes in vitro utilising an OSKM-encoding non-integrating vector. Reprogramming factor expression in postnatal rat and mouse cardiomyocytes triggered rapid but limited cell dedifferentiation. Concomitantly, a significant increase in cell viability, cell cycle related gene expression and Ki67 positive cells was observed cons...
<div><p>Transient overexpression of defined combinations of master regulator genes can effectively i...
The reprogramming of adult cells into pluripotent cells or directly into alternative adult cell type...
Direct reprogramming of fibroblasts into induced cardiomyocytes (iCMs) holds a great promise for reg...
In contrast to mammals, lower vertebrates are capable of extraordinary myocardial regeneration thank...
The induction of in vivo reprogramming toward pluripotency has been demonstrated in several tissues ...
The induction of in vivo reprogramming toward pluripotency has been demonstrated in several tissues ...
Cardiomyocyte (CM) replacement is very slow in adultmammalian hearts, preventing regeneration of dam...
Despite considerable efforts carried out to develop stem/progenitor cell-based technologies aiming a...
Cardiac repair following myocardial injury is restricted due to the limited proliferative potential ...
BackgroundThe regenerative capacity of the heart after myocardial infarction is limited. Our previou...
It has long been thought that mammalian cardiomyocytes are terminally-differentiated and unable to p...
SummaryThe reprogramming of fibroblasts to induced pluripotent stem cells (iPSCs) raises the possibi...
Transient overexpression of defined combinations of master regulator genes can effectively induce ce...
Cardiac diseases are among the most common causes of death globally. Cardiac muscle has limited prol...
Myocardial infarction leads to the loss of a huge number of cardiomyocytes and the reparatory respon...
<div><p>Transient overexpression of defined combinations of master regulator genes can effectively i...
The reprogramming of adult cells into pluripotent cells or directly into alternative adult cell type...
Direct reprogramming of fibroblasts into induced cardiomyocytes (iCMs) holds a great promise for reg...
In contrast to mammals, lower vertebrates are capable of extraordinary myocardial regeneration thank...
The induction of in vivo reprogramming toward pluripotency has been demonstrated in several tissues ...
The induction of in vivo reprogramming toward pluripotency has been demonstrated in several tissues ...
Cardiomyocyte (CM) replacement is very slow in adultmammalian hearts, preventing regeneration of dam...
Despite considerable efforts carried out to develop stem/progenitor cell-based technologies aiming a...
Cardiac repair following myocardial injury is restricted due to the limited proliferative potential ...
BackgroundThe regenerative capacity of the heart after myocardial infarction is limited. Our previou...
It has long been thought that mammalian cardiomyocytes are terminally-differentiated and unable to p...
SummaryThe reprogramming of fibroblasts to induced pluripotent stem cells (iPSCs) raises the possibi...
Transient overexpression of defined combinations of master regulator genes can effectively induce ce...
Cardiac diseases are among the most common causes of death globally. Cardiac muscle has limited prol...
Myocardial infarction leads to the loss of a huge number of cardiomyocytes and the reparatory respon...
<div><p>Transient overexpression of defined combinations of master regulator genes can effectively i...
The reprogramming of adult cells into pluripotent cells or directly into alternative adult cell type...
Direct reprogramming of fibroblasts into induced cardiomyocytes (iCMs) holds a great promise for reg...