RATIONALE: The Notch pathway plays a key role in stimulating mammalian cardiomyocyte proliferation during development and in the early postnatal life; in adult zebrafish, reactivation of this pathway is also essential to drive cardiac regeneration after injury. OBJECTIVE: We wanted to assess efficacy of Notch pathway stimulation in neonatal and adult hearts as a means to induce cardiac regeneration after myocardial infarction in mice. METHODS AND RESULTS: In early postnatal life, cardiomyocyte exit from the cell cycle was paralleled by decreased Notch signaling and the establishment of a repressive chromatin environment at Notch-responsive genes, characterized by recruitment of the polycomb group enhancer of zeste homolog 2 methyltransfera...
INTRODUCTION: Administration of bone marrow-derived mesenchymal stem cells (MSCs) after myocardial i...
Rationale: Physiological hypertrophy in the developing heart has been considered the product of an i...
In the damaged heart, cardiac adaptation relies primarily on cardiomyocyte hypertrophy. The recent d...
AIMS: In the adult heart, Notch signalling regulates the response to injury. Notch inhibition leads ...
Aims In the adult heart, Notch signalling regulates the response to injury. Notch inhibition leads t...
The human heart’s failure to replace ischemia-damaged myocardium with regenerated muscle contributes...
INTRODUCTION:Cardiac mesenchymal stromal cells (CStC) are more efficient than the bone marrow counte...
Rebuilding the human myocardium following pathological injury remains a significant challenge both a...
Background—The signaling mechanisms that regulate the recruitment of bone marrow (BM)–derived cells ...
The Notch signaling pathway plays versatile roles during heart development. However, there is contra...
SummaryFor cell-based treatments of myocardial infarction, a better understanding of key development...
BACKGROUND: Lineage commitment of mesenchymal stem cells (MSCs) to cardiac differentiation is contro...
The Notch receptor mediates cell fate decision in multiple organs. In the current work we tested the...
In the damaged heart, cardiac adaptation relies primarily on cardiomyocyte hypertrophy. The recent d...
Pathological ventricle remodelling, which follows a cardiac insult, causes heart failure. Despite th...
INTRODUCTION: Administration of bone marrow-derived mesenchymal stem cells (MSCs) after myocardial i...
Rationale: Physiological hypertrophy in the developing heart has been considered the product of an i...
In the damaged heart, cardiac adaptation relies primarily on cardiomyocyte hypertrophy. The recent d...
AIMS: In the adult heart, Notch signalling regulates the response to injury. Notch inhibition leads ...
Aims In the adult heart, Notch signalling regulates the response to injury. Notch inhibition leads t...
The human heart’s failure to replace ischemia-damaged myocardium with regenerated muscle contributes...
INTRODUCTION:Cardiac mesenchymal stromal cells (CStC) are more efficient than the bone marrow counte...
Rebuilding the human myocardium following pathological injury remains a significant challenge both a...
Background—The signaling mechanisms that regulate the recruitment of bone marrow (BM)–derived cells ...
The Notch signaling pathway plays versatile roles during heart development. However, there is contra...
SummaryFor cell-based treatments of myocardial infarction, a better understanding of key development...
BACKGROUND: Lineage commitment of mesenchymal stem cells (MSCs) to cardiac differentiation is contro...
The Notch receptor mediates cell fate decision in multiple organs. In the current work we tested the...
In the damaged heart, cardiac adaptation relies primarily on cardiomyocyte hypertrophy. The recent d...
Pathological ventricle remodelling, which follows a cardiac insult, causes heart failure. Despite th...
INTRODUCTION: Administration of bone marrow-derived mesenchymal stem cells (MSCs) after myocardial i...
Rationale: Physiological hypertrophy in the developing heart has been considered the product of an i...
In the damaged heart, cardiac adaptation relies primarily on cardiomyocyte hypertrophy. The recent d...