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Effects of exercise training on cardiovascular adrenergic system

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FRONTIERS IN PHYSIOLOGY
卷 4, 期 -, 页码 -

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FRONTIERS MEDIA SA
DOI: 10.3389/fphys.2013.00348

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exercise; heart failure; adrenergic system; aging process; systemic hypertension

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In heart failure (HF), exercise has been shown to modulate cardiac sympathetic hyperactivation which is one of the earliest features of neurohormonal derangement in this syndrome and correlates with adverse outcome. An important molecular alteration related to chronic sympathetic overstimulation in HF is represented by cardiac beta-adrenergic receptor (beta-AR) dysfunction. It has been demonstrated that exercise reverses beta-AR dysfunction by restoring cardiac receptor membrane density and G-protein-dependent adenylyl cyclase activation. In particular, several evidence indicate that exercise reduces levels of cardiac G-protein coupled receptor kinase-2 (GRK2) which is known to be involved in both beta 1-AR and beta 2-AR dysregulation in HF Similar alterations of beta-AR system have been described also in the senescent heart. It has also been demonstrated that exercise training restores adrenal GRK2/alpha-2AR/catecholamine (CA) production axis. At vascular level, exercise shows a therapeutic effect on age-related impairment of vascular reactivity to adrenergic stimulation and restores beta-AR-dependent vasodilatation by increasing vascular beta-AR responsiveness and reducing endothelial GRK2 activity. Sympathetic nervous system overdrive is thought to account for >50% of all cases of hypertension and a lack of balance between parasympathetic and sympathetic modulation has been observed in hypertensive subjects. Non-pharmacological, lifestyle interventions have been associated with reductions in SNS overactivity and blood pressure in hypertension. Several evidence have highlighted the blood pressure lowering effects of aerobic endurance exercise in patients with hypertension and the significant reduction in sympathetic neural activity has been reported as one of the main mechanisms explaining the favorable effects of exercise on blood pressure control.

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