Impact of dairy protein during limb immobilization and recovery on muscle size and protein synthesis; a randomized controlled trial

Author:

Mitchell Cameron J.1ORCID,D’Souza Randall F.1,Mitchell Sarah M.1,Figueiredo Vandre C.1ORCID,Miller Benjamin F.2,Hamilton Karyn L.2,Peelor Fredrick F.2,Coronet Marcelli1,Pileggi Chantal A.1,Durainayagam Brenan1,Fanning Aaron C.3,Poppitt Sally D.4,Cameron-Smith David1

Affiliation:

1. Liggins Institute, The University of Auckland, Auckland, New Zealand

2. Department of Health and Exercise Science, Colorado State University, Fort Collins, Colorado

3. Fonterra Research and Development Centre, Palmerston North, New Zealand

4. School of Biological Sciences, The University of Auckland, Auckland, New Zealand

Abstract

Muscle disuse results in the loss of muscular strength and size, due to an imbalance between protein synthesis (MPS) and breakdown (MPB). Protein ingestion stimulates MPS, although it is not established if protein is able to attenuate muscle loss with immobilization (IM) or influence the recovery consisting of ambulatory movement followed by resistance training (RT). Thirty men (49.9 ± 0.6 yr) underwent 14 days of unilateral leg IM, 14 days of ambulatory recovery (AR), and a further six RT sessions over 14 days. Participants were randomized to consume an additional 20 g of dairy protein or placebo with a meal during the intervention. Isometric knee extension strength was reduced following IM (−24.7 ± 2.7%), partially recovered with AR (−8.6 ± 2.6%), and fully recovered after RT (−0.6 ± 3.4%), with no effect of supplementation. Thigh muscle cross-sectional area decreased with IM (−4.1 ± 0.5%), partially recovered with AR (−2.1 ± 0.5%), and increased above baseline with RT (+2.2 ± 0.5%), with no treatment effect. Myofibrillar MPS, measured using deuterated water, was unaltered by IM, with no effect of protein. During AR, MPS was increased only with protein supplementation. Protein supplementation did not attenuate the loss of muscle size and function with disuse or potentiate recovery but enhanced myofibrillar MPS during AR. NEW & NOTEWORTHY Twenty grams of daily protein supplementation does not attenuate the loss of muscle size and function induced by 2 wk of muscle disuse or potentiate recovery in middle-age men. Average mitochondrial but not myofibrillar muscle protein synthesis was attenuated during immobilization with no effect of supplementation. Protein supplementation increased myofibrillar protein synthesis during a 2-wk period of ambulatory recovery following disuse but without group differences in phenotype recovery.

Funder

New Zealand Primary Growth Partnership Post Farm Gate Programme

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology

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