Patients who have suffered a heart attack are at risk of developing worsening heart function and heart failure. Exercise training has a beneficial effect on heart function and prevents heart failure. The aim of the current study is to investigate the effect of exercise training on heart function in patients who have suffered a heart attack.
Patients who have suffered a myocardial infarction are at significant risk for developing heart failure and progressive left ventricular dysfunction One of the proposed mechanisms responsible for this observation is reduction in myocardial beta-adrenergic receptor density due to elevated cell membrane protein G - protein coupled receptor kinase -2 (GRK2). It is known that exercise training preserves heart function in patients who have suffered a myocardial infarction. The mechanism for this is not clear. The purpose of this study is to examine the effect of exercise training on myocardial function and GRK2 levels in patients who have suffered a myocardial infarction, with the hypothesis that exercise training in this population reduces GRK2 levels and preserves or improves myocardial function.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
PREVENTION
Masking
NONE
Enrollment
26
Secondary prevention and cardiac rehabilitation clinic of the Montreal Heart Institute. Subjects will undergo twice weekly exercise training with high intensity interval training for a period of 12 weeks.
Centre for preventive medicine and physical activity of the Montreal Heart Institute (Centre ÉPIC)
Montreal, Quebec, Canada
Lymphocyte GRK2 mRNA level
change in lymphocyte GRK2 mRNA levels
Time frame: at baseline and following 12 weeks exercise training intervention
Left ventricular systolic function
change in left ventricular systolic function
Time frame: at baseline and following 12 weeks exercise training intervention
Left ventricular dimensions
Change in left ventricular dimensions
Time frame: at baseline and following 12 weeks exercise training intervention
Plasma epinephrine
change in plasma epinephrine
Time frame: at baseline and following 12 weeks exercise training intervention
heart rate variability
change change in autonomic tone
Time frame: at baseline and following 12 weeks exercise training intervention
exercise capacity (VO2max)
Change before and after exercise training
Time frame: at baseline and following 12 weeks exercise training intervention
ambulatory blood pressure
Change in awake and 24h blood pressure
Time frame: at baseline and following 12 weeks exercise training intervention
Plasma brain natriuretic peptide
change in plasma brain naturietic peptide
Time frame: at baseline and following 12 weeks exercise training intervention
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Maximal cardiac output and stroke volume using electrical bioimpedance
change in maximal cardiac output and stroke volume
Time frame: at baseline and following 12 weeks exercise training intervention
lymphocyte GRK2 protein levels
change in lymphocyte GRK2 protein levels
Time frame: at baseline and following 12 weeks exercise training intervention