The loss of endogenous cardiac regenerative capacity within the first week of postnatal life has intensified clinical trials to induce cardiac regeneration in the adult mammalian heart using different progenitor cell types. We hypothesized that donor age-related phenotypic and functional characteristics of cardiac progenitor cells (CPC) account for mixed results of cell-based cardiac repair. We compared expression profiles and cell turnover rates of human heart-derived c-kitpos progenitors (c-kitpos CPC) and cardiosphere-derived cells (CDC) from young and adult donor origin and studied their in vitro angiogenic and cardiac differentiation potential, which can be relevant for cardiac repair. We report that 3-dimensional CDC expansion recapit...
Abstract—Cardiac myocytes have been traditionally regarded as terminally differentiated cells that a...
Background: Numerous studies from different labs around the world report human cardiac progenitor ce...
Rationale: Multiple biological mechanisms contribute to the efficacy of cardiac cell therapy. Most p...
The loss of endogenous cardiac regenerative capacity within the first week of postnatal life has int...
The loss of endogenous cardiac regenerative capacity within the first week of postnatal life has int...
The loss of endogenous cardiac regenerative capacity within the first week of postnatal life has int...
Background—Human cardiac stem cells (CSCs) promote myocardial regeneration in adult ischemic myocard...
AbstractResident cardiac stem cells in embryonic, neonatal and adult mammalian heart have been ident...
Resident cardiac stem cells in embryonic, neonatal and adult mammalian heart have been identified by...
Heart disease remains a serious and intractable disease resulting in decreased productivity and incr...
Preliminary efficacy data indicates that stem cell transplantation has the potential to enhance myoc...
The heart is the first functional organ to develop, and cardiomyocytes (cardiac muscle cells) are th...
Aims: Cardiovascular diseases caused by loss of functional cardiomyocytes (CMs) are a major cause of...
Aims: Cardiovascular diseases caused by loss of functional cardiomyocytes (CMs) are a major cause of...
Abstract—Cardiac myocytes have been traditionally regarded as terminally differentiated cells that a...
Abstract—Cardiac myocytes have been traditionally regarded as terminally differentiated cells that a...
Background: Numerous studies from different labs around the world report human cardiac progenitor ce...
Rationale: Multiple biological mechanisms contribute to the efficacy of cardiac cell therapy. Most p...
The loss of endogenous cardiac regenerative capacity within the first week of postnatal life has int...
The loss of endogenous cardiac regenerative capacity within the first week of postnatal life has int...
The loss of endogenous cardiac regenerative capacity within the first week of postnatal life has int...
Background—Human cardiac stem cells (CSCs) promote myocardial regeneration in adult ischemic myocard...
AbstractResident cardiac stem cells in embryonic, neonatal and adult mammalian heart have been ident...
Resident cardiac stem cells in embryonic, neonatal and adult mammalian heart have been identified by...
Heart disease remains a serious and intractable disease resulting in decreased productivity and incr...
Preliminary efficacy data indicates that stem cell transplantation has the potential to enhance myoc...
The heart is the first functional organ to develop, and cardiomyocytes (cardiac muscle cells) are th...
Aims: Cardiovascular diseases caused by loss of functional cardiomyocytes (CMs) are a major cause of...
Aims: Cardiovascular diseases caused by loss of functional cardiomyocytes (CMs) are a major cause of...
Abstract—Cardiac myocytes have been traditionally regarded as terminally differentiated cells that a...
Abstract—Cardiac myocytes have been traditionally regarded as terminally differentiated cells that a...
Background: Numerous studies from different labs around the world report human cardiac progenitor ce...
Rationale: Multiple biological mechanisms contribute to the efficacy of cardiac cell therapy. Most p...