The Effect of Sex and Protein Supplementation on Protein Turnover and Muscle Function during a 36-H Military Field Exercise in Energy Deficit.

O'Leary, Thomas J; Coombs, Charlotte V; Edwards, Victoria C; Blacker, Sam D; Knight, Rebecca L; Koivula, Fiona N; Smith, Kenneth; Atherton, Philip J et al. · Med Sci Sports Exerc · 2025

prospective_cohort · Level II

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Abstract

This study investigated sex differences in, and the effect of protein supplementation on, whole-body protein turnover during a military field exercise. Forty-four British Army trainees (14 women) completed a 36-h field exercise. Participants consumed their habitual diet ( n = 14 women [Women], protein intake 1.7 g·kg -1 ·d -1 ; n = 15 men [Men Controls], protein intake 1.6 g·kg -1 ·d -1 ) or the habitual diet and an additional 46.6 g·d -1 protein ( n = 15 men [Men Protein], protein intake 2.1 g·kg -1 ·d -1 ). Total 24-h whole-body protein turnover was measured using the [ 15 N]-glycine end-product method, and muscle protein breakdown was estimated from urinary 3MH:creatinine 24 h before, during, and 96 h after field exercise. Women and Men Protein were compared with Men Controls to examine the effect of sex and protein supplementation. Whole-body protein turnover, synthesis, breakdown, and balance, and 3MH:creatinine did not differ between time points ( P ≥ 0.056). Whole-body protein balance was higher and 3MH:creatinine was lower in Women than Men Controls (all time points, P ≤ 0.032), with no difference between sexes for other measures of protein turnover ( P ≥ 0.072). Men Protein and Men Controls were not different for any outcome ( P ≥ 0.060) but adjusted mean differences [95% confidence intervals] showed protein balance was 1.12 [0.28, 1.97] g·kg -1 ·d -1 higher in Men Protein than Men Controls during the field exercise. Women have higher whole-body protein balance than men in arduous training, likely due to higher energy balance. Protein supplementation may be effective for protecting whole-body protein balance in men.

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