Aging is a major factor in many cardiovascular diseases. The molecular factors that regulate age-related changes in cardiac physiology and contribute to the increased cardiovascular risk in the elderly are not fully understood. A study recently published in Nature suggests a specific role for microRNAs (miRNAs) in regulating cardiac aging and function, challenging the concept that aging is an inevitable process in the heart
The search for eternal youth is age old. In a recent Nature paper, Boon et al. (2013) describe DNA d...
Cardiac hypertrophy is a frequent pathological reaction to hypertension, pulmonary hypertension, and...
The heart, more than any other organ, requires precise functionality on a second-to-second basis thr...
The prevalence of age-related diseases is increasing dramatically, among which cardiac disease repre...
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...
Ageing is the predominant risk factor for cardiovascular diseases and contributes to a significantly...
Over the last decades, life expectancy has significantly increased although several chronic diseases...
MicroRNAs (miRs) have emerged as potent regulators of pathways in physiological and disease contexts...
AbstractBackgroundAging populations show higher incidences of myocardial infarction (MI) and heart f...
Aging has a remarkable impact on the function of the heart, and is independently associated with inc...
Aging is a multifactorial process that affects the organisms at genetic, molecular and cellular leve...
BACKGROUND Aging populations show higher incidences of myocardial infarction (MI) and heart failure ...
Aging is a complex process that is linked to an increased incidence of major diseases such as cardio...
With a progressively growing elderly population, ageing-associated pathologies such as cardiovascula...
The search for eternal youth is age old. In a recent Nature paper, Boon et al. (2013) describe DNA d...
Cardiac hypertrophy is a frequent pathological reaction to hypertension, pulmonary hypertension, and...
The heart, more than any other organ, requires precise functionality on a second-to-second basis thr...
The prevalence of age-related diseases is increasing dramatically, among which cardiac disease repre...
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...
Ageing is the predominant risk factor for cardiovascular diseases and contributes to a significantly...
Over the last decades, life expectancy has significantly increased although several chronic diseases...
MicroRNAs (miRs) have emerged as potent regulators of pathways in physiological and disease contexts...
AbstractBackgroundAging populations show higher incidences of myocardial infarction (MI) and heart f...
Aging has a remarkable impact on the function of the heart, and is independently associated with inc...
Aging is a multifactorial process that affects the organisms at genetic, molecular and cellular leve...
BACKGROUND Aging populations show higher incidences of myocardial infarction (MI) and heart failure ...
Aging is a complex process that is linked to an increased incidence of major diseases such as cardio...
With a progressively growing elderly population, ageing-associated pathologies such as cardiovascula...
The search for eternal youth is age old. In a recent Nature paper, Boon et al. (2013) describe DNA d...
Cardiac hypertrophy is a frequent pathological reaction to hypertension, pulmonary hypertension, and...
The heart, more than any other organ, requires precise functionality on a second-to-second basis thr...