Key result
A 4-week exercise-based cardiac rehabilitation program significantly increased Sirt1 activity and stimulated systemic antioxidant defenses in elderly male patients with stable heart failure.
Why the study?
Does a 4-week exercise-based cardiac rehabilitation programme improve Sirt1 activity and antioxidant capacity in elderly male patients with stable HFpEF?
Observational (n=50)
No
Does a 4-week exercise-based cardiac rehabilitation programme improve Sirt1 activity and antioxidant capacity in elderly male patients with stable HFpEF?
p-value: p=0.02
A 4-week exercise-based cardiac rehabilitation program increases Sirt1 activity and systemic antioxidant defenses in elderly male patients with HFpEF, suggesting a molecular mechanism for its beneficial effects.
Supports mechanistic insight from short CR in elderly male HFpEF; hypothesis-generating and requires RCTs before practice change.
BACKGROUND: An exercise-based Cardiac Rehabilitation Programme (CRP) is established as adjuvant therapy in heart failure (HF), nevertheless it is underutilized, especially in the elderly. While the functional and hemodynamic effects of CRP are well known, its underlying molecular mechanisms have not been fully clarified. The present study aims to evaluate the effects of a well-structured 4-week CRP in patients with stable HF from a molecular point of view. RESULTS: A prospective longitudinal observational study was conducted on patients consecutively admitted to cardiac rehabilitation. In fifty elderly HF patients with preserved ejection fraction (HFpEF), levels of sirtuin 1 (Sirt1) in peripheral blood mononuclear cells (PBMCs) and of its targets, the antioxidants catalase (Cat) and superoxide dismutase (SOD) in serum were measured before (Patients, P) and at the end of the CRP (Rehabilitated Patients, RP), showing a rise of their activities after rehabilitation. Endothelial cells (ECs) were conditioned with serum from P and RP, and oxidative stress was induced using hydrogen peroxide. An increase of Sirt1 and Cat activity was detected in RP-conditioned ECs in both the absence and presence of oxidative stress, together with a decrease of senescence, an effect not observed during Sirt1 and Cat inhibition. CONCLUSIONS: In addition to the improvement in functional and hemodynamic parameters, a supervised exercise-based CRP increases Sirt1 activity and stimulates a systemic antioxidant defence in elderly HFpEF patients. Moreover, CRP produces antioxidant and anti-senescent effects in human endothelial cells mediated, at least in part, by Sirt1 and its target Cat.
No takes yet. Share an insight, caveat, or question.
Russomanno et al. (2017) conducted an observational in Stable Heart Failure with preserved ejection fraction (HFpEF) (n=50). Cardiac Rehabilitation Programme (CRP) vs. Baseline (before CRP) was evaluated on Sirt1 activity in peripheral blood mononuclear cells (p=0.02). A 4-week exercise-based cardiac rehabilitation program significantly increased Sirt1 activity and stimulated systemic antioxidant defenses in elderly male patients with stable heart failure.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: