<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury that is lost within the first week of its life. In order to elucidate the molecular mechanisms taking place in the mouse heart during this critical period we applied an untargeted combinatory multiomics approach using large-scale mass spectrometry-based quantitative proteomics, metabolomics and mRNA sequencing on hearts from 1-day-old and 7-day-old mice. As a result, we quantified 1.937 proteins (366 differentially expressed), 612 metabolites (263 differentially regulated) and revealed 2.586 differentially expressed gene loci (2.175 annotated genes). The analyses pinpointed the fructose-induced glycolysis-pathway to be markedly active in 1-day-o...
Objective: To study postnatal cardiac differentiation in the mouse. Hypothesis: There might be mecha...
There are tremendous health and financial burdens attributed to cardiovascular disease. The most com...
Postnatal maturation of cardiomyocytes is characterized by a metabolic switch from glycolysis to fat...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury that i...
Background The molecular mechanisms mediating postnatal loss of cardiac regeneration in mammals are ...
Abstract The ability of the adult mammalian heart to regenerate can save the cardiac muscle from a l...
BACKGROUND: The inability of the adult mammalian heart to regenerate following injury represents a m...
BACKGROUND—: The inability of the adult mammalian heart to regenerate following injury represents a ...
Neonatal mice have been shown to regenerate their hearts during a transient window of time of approx...
Objective: To study postnatal cardiac differentiation in the mouse. Hypothesis: There might be mecha...
There are tremendous health and financial burdens attributed to cardiovascular disease. The most com...
Postnatal maturation of cardiomyocytes is characterized by a metabolic switch from glycolysis to fat...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
<p>The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury tha...
The heart of a newborn mouse has an exceptional capacity to regenerate from myocardial injury that i...
Background The molecular mechanisms mediating postnatal loss of cardiac regeneration in mammals are ...
Abstract The ability of the adult mammalian heart to regenerate can save the cardiac muscle from a l...
BACKGROUND: The inability of the adult mammalian heart to regenerate following injury represents a m...
BACKGROUND—: The inability of the adult mammalian heart to regenerate following injury represents a ...
Neonatal mice have been shown to regenerate their hearts during a transient window of time of approx...
Objective: To study postnatal cardiac differentiation in the mouse. Hypothesis: There might be mecha...
There are tremendous health and financial burdens attributed to cardiovascular disease. The most com...
Postnatal maturation of cardiomyocytes is characterized by a metabolic switch from glycolysis to fat...