Cell therapy has developed as a complementary treatment for myocardial regeneration. While both autologous and allogeneic uses have been advocated, the ideal candidate has not been identified yet. Amniotic fluid-derived stem (AFS) cells are potentially a promising resource for cell therapy and tissue engineering of myocardial injuries. However, no information is available regarding their use in an allogeneic context. c-kit-sorted, GFP-positive rat AFS (GFP-rAFS) cells and neonatal rat cardiomyocytes (rCMs) were characterized by cytocentrifugation and flow cytometry for the expression of mesenchymal, embryonic and cell lineage-specific antigens. The activation of the myocardial gene program in GFP-rAFS cells was induced by co-culture with rC...
Transplantation of stem cells in the acute ischemic myocardium (AMI) may play a role in the recovery...
Myocardial regeneration through stem cell therapy is a relatively new concept that has the potential...
Background: The adult mammalian heart retains residual regenerative capability via endogenous cardia...
# Springer Science+Business Media, LLC 2011 Abstract Cell therapy has developed as a complementary t...
Background. In the last years tissue engineering for cardiac pathologies has been broadly developed...
In recent years, various types of stem cells have been characterized and their potential for cardiac...
Human amniotic fluid-derived stem (AFS) cells, similarly to embryonic stem cells, could possess priv...
Human amniotic fluid-derived stem (AFS) cells, similarly to embryonic stem cells, could possess pri...
Cardiac tissue engineering is limited by the lack of a clinically relevant cell source. Amniotic flu...
Cellular cardiomyoplasty is undergoing intensive investigation as a new form of therapy for severely...
Recent research has demonstrated that a population of stem cells can be isolated from amniotic fluid...
Human amniotic epithelial cells (h-AECs), which have various merits as a cell source for cell therap...
Efficacy of adult (bone marrow, BM) versus fetal (amniotic fluid, AF) mesenchymal stem cells (MSCs)...
International audienceHuman embryonic stem (HES) cells can give rise to cardiomyocytes in vitro. How...
[[abstract]]Background The heart is a highly vascular organ and prolonged interruption of myocardial...
Transplantation of stem cells in the acute ischemic myocardium (AMI) may play a role in the recovery...
Myocardial regeneration through stem cell therapy is a relatively new concept that has the potential...
Background: The adult mammalian heart retains residual regenerative capability via endogenous cardia...
# Springer Science+Business Media, LLC 2011 Abstract Cell therapy has developed as a complementary t...
Background. In the last years tissue engineering for cardiac pathologies has been broadly developed...
In recent years, various types of stem cells have been characterized and their potential for cardiac...
Human amniotic fluid-derived stem (AFS) cells, similarly to embryonic stem cells, could possess priv...
Human amniotic fluid-derived stem (AFS) cells, similarly to embryonic stem cells, could possess pri...
Cardiac tissue engineering is limited by the lack of a clinically relevant cell source. Amniotic flu...
Cellular cardiomyoplasty is undergoing intensive investigation as a new form of therapy for severely...
Recent research has demonstrated that a population of stem cells can be isolated from amniotic fluid...
Human amniotic epithelial cells (h-AECs), which have various merits as a cell source for cell therap...
Efficacy of adult (bone marrow, BM) versus fetal (amniotic fluid, AF) mesenchymal stem cells (MSCs)...
International audienceHuman embryonic stem (HES) cells can give rise to cardiomyocytes in vitro. How...
[[abstract]]Background The heart is a highly vascular organ and prolonged interruption of myocardial...
Transplantation of stem cells in the acute ischemic myocardium (AMI) may play a role in the recovery...
Myocardial regeneration through stem cell therapy is a relatively new concept that has the potential...
Background: The adult mammalian heart retains residual regenerative capability via endogenous cardia...