Aging is the main risk factor for cardiovascular diseases. In humans, cardiac aging remains poorly characterized. Most studies are based on chronological age (CA) and disregard biological age (BA), the actual physiological age (result of the aging rate on the organ structure and function), thus yielding potentially imperfect outcomes. Deciphering the molecular basis of ventricular aging, especially by BA, could lead to major progresses in cardiac research. We aim to describe the transcriptome dynamics of the aging left ventricle (LV) in humans according to both CA and BA and characterize the contribution of microRNAs, key transcriptional regulators. BA is measured using two CA-associated transcriptional markers: CDKN2A expression, a cell se...
AbstractBackgroundAging populations show higher incidences of myocardial infarction (MI) and heart f...
In most developed countries, cardiovascular diseases are among the top causes of death and their dev...
The thesis entitles different aspects of cardiac development by looking at the transcriptome during ...
Aging is the main risk factor for cardiovascular diseases. In humans, cardiac aging remains poorly c...
Cardiac function deteriorates with aging or disease. Short term, any changes in heart function may b...
Aging has a remarkable impact on the function of the heart, and is independently associated with inc...
The prevalence of age-related diseases is increasing dramatically, among which cardiac disease repre...
Aging and aging-related diseases are associated with altered patterns of gene expression, involving ...
Over the last decades, life expectancy has significantly increased although several chronic diseases...
With advancing age the left ventricle (LV) undergoes structural and functional changes, thereby crea...
The aging cell has been associated with dysfunctions in protein homeostasis even when disease is not...
Cardiovascular disease accounts for millions of deaths each year and is currently the leading cause ...
The microRNAs have been implicated in the process of cardiac development, cardiac hypertrophy, and h...
The microRNAs have been implicated in the process of cardiac development, cardiac hypertrophy, and h...
BACKGROUND Aging populations show higher incidences of myocardial infarction (MI) and heart failure ...
AbstractBackgroundAging populations show higher incidences of myocardial infarction (MI) and heart f...
In most developed countries, cardiovascular diseases are among the top causes of death and their dev...
The thesis entitles different aspects of cardiac development by looking at the transcriptome during ...
Aging is the main risk factor for cardiovascular diseases. In humans, cardiac aging remains poorly c...
Cardiac function deteriorates with aging or disease. Short term, any changes in heart function may b...
Aging has a remarkable impact on the function of the heart, and is independently associated with inc...
The prevalence of age-related diseases is increasing dramatically, among which cardiac disease repre...
Aging and aging-related diseases are associated with altered patterns of gene expression, involving ...
Over the last decades, life expectancy has significantly increased although several chronic diseases...
With advancing age the left ventricle (LV) undergoes structural and functional changes, thereby crea...
The aging cell has been associated with dysfunctions in protein homeostasis even when disease is not...
Cardiovascular disease accounts for millions of deaths each year and is currently the leading cause ...
The microRNAs have been implicated in the process of cardiac development, cardiac hypertrophy, and h...
The microRNAs have been implicated in the process of cardiac development, cardiac hypertrophy, and h...
BACKGROUND Aging populations show higher incidences of myocardial infarction (MI) and heart failure ...
AbstractBackgroundAging populations show higher incidences of myocardial infarction (MI) and heart f...
In most developed countries, cardiovascular diseases are among the top causes of death and their dev...
The thesis entitles different aspects of cardiac development by looking at the transcriptome during ...