Key result
A 4-week exercise training-based cardiac rehabilitation program increased Sirt1 activity, βOHB levels, and antioxidant capacity, and reduced Ox-LDL in elderly patients with HFpEF.
Why the study?
No studies had investigated the role of exercise training-based cardiac rehabilitation programs on β-hydroxybutyrate levels in patients with heart failure with preserved ejection fraction.
Does a supervised 4-week exercise training-based cardiac rehabilitation program improve Sirt1 activity, βOHB levels, and oxidative stress in elderly patients with HFpEF?
Observational (n=70)
No
Does a supervised 4-week exercise training-based cardiac rehabilitation program improve Sirt1 activity, βOHB levels, and oxidative stress in elderly patients with HFpEF?
A 4-week supervised cardiac rehabilitation program improves metabolic and oxidative stress biomarkers, including Sirt1 and βOHB, in elderly patients with HFpEF.
Supports biomarker gains with short cardiac rehab in elderly HFpEF; leaves open effects on clinical outcomes.
Purpose. Exercise training induces beneficial effects also by increasing levels of Sirtuin 1 (Sirt1) and β-hydroxybutyrate (βOHB). Up to date, no studies investigated the role of exercise training-based cardiac rehabilitation (ET-CR) programs on βOHB levels. Therefore, the present study is aimed at investigating whether a supervised 4-week ET-CR program was able to induce changes in Sirt1 activity and βOHB levels and to evaluate the possible relationship between such parameters, in Heart Failure with preserved Ejection Fraction (HFpEF) patients. Methods. A prospective longitudinal observational study was conducted on patients consecutively admitted to the Cardiology and Cardiac Rehabilitation Units of “San Gennaro dei Poveri” Hospital in Naples, Italy. In fifty elderly patients affected by HFpEF, in NYHA II and III class, Sirt1 activity, Trolox Equivalent Antioxidant Capacity (TEAC), βOHB, and Oxidized Low-Density Lipoprotein (Ox-LDL) levels were measured before and at the end of the ET-CR program. A control group of 20 HFpEF patients was also recruited, and the same parameters were evaluated 4 weeks after the beginning of the study. Results. ET-CR induced an increase of Sirt1 activity, βOHB levels, and antioxidant capacity. Moreover, it was associated with a rise in NAD+ and NAD+/NADH ratio levels and a reduction in Ox-LDL. No changes affected the controls. Conclusion. The characterization of the ET-CR effects from a metabolic viewpoint might represent an important step to improve the HFpEF management.
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Corbi et al. (2019) conducted an observational in Heart Failure with preserved Ejection Fraction (HFpEF) (n=70). Exercise training-based cardiac rehabilitation (ET-CR) vs. Control group of HFpEF patients not undergoing ET-CR was evaluated on Sirt1 activity, Trolox Equivalent Antioxidant Capacity (TEAC), βOHB, and Oxidized Low-Density Lipoprotein (Ox-LDL) levels. A 4-week exercise training-based cardiac rehabilitation program increased Sirt1 activity, βOHB levels, and antioxidant capacity, and reduced Ox-LDL in elderly patients with HFpEF.
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