Key result
In hypertensive rats, endurance training decreased left ventricular fibrosis by ~40%, whereas high-intensity interval training induced pathological remodeling, increasing left ventricular mass by 20% and brain natriuretic peptide by 50%.
Why the study?
Does high intensity interval training compared to endurance training improve cardiac remodeling in a hypertensive rat model?
Does high intensity interval training compared to endurance training improve cardiac remodeling in a hypertensive rat model?
p-value: p=<0.05
Animal cardiac data on HIIT versus ET require human validation; leaves open effects on diseased myocardium.
There has been re-emerging interest and significant work dedicated to investigating the metabolic effects of high intensity interval training (HIIT) in recent years. HIIT is considered to be a time efficient alternative to classic endurance training (ET) that elicits similar metabolic responses in skeletal muscle. However, there is a lack of information on the impact of HIIT on cardiac muscle in disease. Therefore, we determined the efficacy of ET and HIIT to alter cardiac muscle characteristics involved in the development of diastolic dysfunction, such as ventricular hypertrophy, fibrosis and angiogenesis, in a well-established rodent model of hypertension-induced heart failure before the development of overt heart failure. ET decreased left ventricle fibrosis by ~40% (P < 0.05), and promoted a 20% (P<0.05) increase in the left ventricular capillary/fibre ratio, an increase in endothelial nitric oxide synthase protein (P<0.05), and a decrease in hypoxia inducible factor 1 alpha protein content (P<0.05). In contrast, HIIT did not decrease existing fibrosis, and HIIT animals displayed a 20% increase in left ventricular mass (P<0.05) and a 20% decrease in cross sectional area (P<0.05). HIIT also increased brain natriuretic peptide by 50% (P<0.05), in the absence of concomitant angiogenesis, strongly suggesting pathological cardiac remodeling. The current data support the longstanding belief in the effectiveness of ET in hypertension. However, HIIT promoted a pathological adaptation in the left ventricle in the presence of hypertension, highlighting the need for further research on the widespread effects of HIIT in the presence of disease.
No takes yet. Share an insight, caveat, or question.
Holloway et al. (2015) studied Hypertension-induced heart failure (n=24). High Intensity Interval Training (HIIT) and Endurance Training (ET) vs. Sedentary (HS-SED) was evaluated on Left ventricular fibrosis and cardiac remodeling markers (p=<0.05). In hypertensive rats, endurance training decreased left ventricular fibrosis by ~40%, whereas high-intensity interval training induced pathological remodeling, increasing left ventricular mass by 20% and brain natriuretic peptide by 50%.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: