Mammalian heart formation is a complex morphogenetic event that depends on the correct temporal and spatial contribution of distinct cell sources. During cardiac formation, cellular specification, differentiation, and rearrangement are tightly regulated by an intricate signaling network. Over the last years, many aspects of this network have been uncovered not only due to advances in cardiac development comprehension but also due to the use of embryonic stem cells (ESCs) in vitro model system. Additionally, several of these pathways have been shown to be functional or reactivated in the setting of cardiac disease. Knowledge withdrawn from studying heart development, ESCs differentiation, and cardiac pathophysiology may be helpful to envisag...
The cues governing cardiac cell-fate decisions, cardiac differentiation, and three-dimensional morph...
The identification of different pools of cardiac progenitor cells resident in the adult mammalian he...
In this thesis, we show that stem cells biology may lead to future cardiac regenerative strategies. ...
Mammalian heart formation is a complex morphogenetic event that depends on the correct temporal and ...
Copyright © 2014 Ana G. Freire et al. This is an open access article distributed under the Creative ...
The mammalian heart is the first functional organ, the first indicator of life. Its normal formation...
The mammalian heart is the first functional organ, the first indicator of life. Its normal formation...
Cell-based therapies hold promise of repairing an injured heart, and the description of stem and pro...
During development, the embryonic heart grows by addition of cells from a highly proliferative proge...
Abstract From the 1920s, early cardiac development has been studied in chick and, later, in mouse em...
Abstract: Cardiac muscle creation during embryogenesis requires extracellular instructive signals th...
Introduction Owing to the negligible ability of the adult heart to replace damaged myocardium, an in...
International audienceThe formation of the heart involves diversification of lineages which differen...
Cardiac regeneration is a homeostatic cardiogenic process by which the sections of malfunctioning ad...
The mammalian hearts have the least regenerative capabilities among tissues and organs. As such, hea...
The cues governing cardiac cell-fate decisions, cardiac differentiation, and three-dimensional morph...
The identification of different pools of cardiac progenitor cells resident in the adult mammalian he...
In this thesis, we show that stem cells biology may lead to future cardiac regenerative strategies. ...
Mammalian heart formation is a complex morphogenetic event that depends on the correct temporal and ...
Copyright © 2014 Ana G. Freire et al. This is an open access article distributed under the Creative ...
The mammalian heart is the first functional organ, the first indicator of life. Its normal formation...
The mammalian heart is the first functional organ, the first indicator of life. Its normal formation...
Cell-based therapies hold promise of repairing an injured heart, and the description of stem and pro...
During development, the embryonic heart grows by addition of cells from a highly proliferative proge...
Abstract From the 1920s, early cardiac development has been studied in chick and, later, in mouse em...
Abstract: Cardiac muscle creation during embryogenesis requires extracellular instructive signals th...
Introduction Owing to the negligible ability of the adult heart to replace damaged myocardium, an in...
International audienceThe formation of the heart involves diversification of lineages which differen...
Cardiac regeneration is a homeostatic cardiogenic process by which the sections of malfunctioning ad...
The mammalian hearts have the least regenerative capabilities among tissues and organs. As such, hea...
The cues governing cardiac cell-fate decisions, cardiac differentiation, and three-dimensional morph...
The identification of different pools of cardiac progenitor cells resident in the adult mammalian he...
In this thesis, we show that stem cells biology may lead to future cardiac regenerative strategies. ...