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Updated: Jul 16, 2026

A Chronic High-Intensity Interval Training and Diet-Induced Obesity Model to Maximize Exercise Effort and Induce Physiologic Changes in Rats
Published on: April 28, 2023
Acute appetite and gut-hormone responses to two combined training sessions: a randomized crossover study in men with
Nan Li1, Min Wu2, Yanchun Li3,4,5
1Beijing Sport University, Beijing, China.
Objective:
This randomized crossover study compared acute appetite-related, gut-hormone, and energy-intake responses between moderate-intensity resistance plus aerobic training (RAT) and high-intensity functional plus aerobic training (FAT) in males with obesity.
Methods:
Twenty-one men with obesity completed both protocols in a randomized crossover design. Subjective appetite was assessed using a visual analogue scale, and insulin, glucagon-like peptide-1, and peptide YY (PYY) were measured pre-, post-, and 1 h post-exercise. Energy intake was recorded during subsequent meals and over 2 days.
Results:
PYY responses differed between conditions over time, with a significant condition × time interaction (P = 0.015). At 1 h post-exercise, PYY concentrations were higher after RAT than after FAT (ratio = 1.69, 95% CI 1.26-2.27; adjusted P < 0.001). PYY AUC was higher in RAT than in FAT (ratio [RAT/FAT] = 1.44; P = 0.016). Fullness AUC was lower after RAT than after FAT, whereas prospective food consumption AUC was higher after RAT than after FAT (Δ [RAT - FAT] = -670.0 and 701.4 mm·120 min; P = 0.014 and P = 0.016, respectively). No between-condition differences were observed in energy intake on the trial day or the following day.
Conclusion:
Varying the resistance component within combined exercise may elicit distinct acute hormonal and perceptual appetite responses in young men with obesity, without altering short-term energy intake. These findings should be interpreted as comparative responses between RAT and FAT rather than exercise-induced effects per se.
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