Resistance Training Diminishes Mitochondrial Adaptations to Subsequent Endurance Training.


Journal

bioRxiv : the preprint server for biology
Titre abrégé: bioRxiv
Pays: United States
ID NLM: 101680187

Informations de publication

Date de publication:
06 Apr 2023
Historique:
medline: 18 4 2023
entrez: 17 4 2023
pubmed: 18 4 2023
Statut: epublish

Résumé

We investigated the effects of performing a period of resistance training (RT) on the performance and molecular adaptations to a subsequent period of endurance training (ET). Twenty-five young adults were divided into RT+ET (n=13), which underwent seven weeks of RT followed by seven weeks of ET, and ET-only (n=12), which performed seven weeks of ET. Body composition, endurance performance, and muscle biopsies were collected before RT (T1, baseline for RT+ET), before ET (T2, post RT for RT+ET and baseline for ET), and after ET (T3). Immunohistochemistry was performed to determine fiber cross-sectional area (fCSA), myonuclear content, myonuclear domain size, satellite cell number, and mitochondrial content. Western blots were used to quantify markers of mitochondrial remodeling. Citrate synthase activity and markers of ribosome content were also investigated. Resistance training improved body composition and strength, increased vastus lateralis thickness, mixed and type II fCSA, myonuclear number, markers of ribosome content, and satellite cell content (p<0.050). In response to ET, both groups similarly decreased body fat percentage and improved endurance performance (e.g., VO Resistance training is largely underappreciated as a method to improve endurance performance, despite reports showing it may improve mitochondrial function.Although several concurrent training studies are available, in this study we investigated the effects of performing a period resistance training on the performance and molecular adaptations to subsequent endurance training.Prior resistance training did not improve endurance performance and impaired most mitochondrial adaptations to subsequent endurance training, but that seemed to be a result of detraining from resistance training.

Identifiants

pubmed: 37066356
doi: 10.1101/2023.04.06.535919
pmc: PMC10104141
pii:
doi:

Types de publication

Preprint

Langues

eng

Subventions

Organisme : NIGMS NIH HHS
ID : T32 GM141739
Pays : United States

Commentaires et corrections

Type : UpdateIn

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Auteurs

Paulo H C Mesquita (PHC)

School of Kinesiology, Auburn University, Auburn, AL, USA.

Joshua S Godwin (JS)

School of Kinesiology, Auburn University, Auburn, AL, USA.

Bradley A Ruple (BA)

School of Kinesiology, Auburn University, Auburn, AL, USA.

Casey L Sexton (CL)

School of Kinesiology, Auburn University, Auburn, AL, USA.

Mason C McIntosh (MC)

School of Kinesiology, Auburn University, Auburn, AL, USA.

Breanna J Mueller (BJ)

School of Kinesiology, Auburn University, Auburn, AL, USA.

Shelby C Osburn (SC)

School of Kinesiology, Auburn University, Auburn, AL, USA.

C Brooks Mobley (CB)

School of Kinesiology, Auburn University, Auburn, AL, USA.

Cleiton A Libardi (CA)

Department of Physical Education, Federal University of São Carlos, São Carlos, Brazil.

Kaelin C Young (KC)

Biomedical Sciences, Pacific Northwest University of Health Sciences, Yakima, WA, USA.

L Bruce Gladden (LB)

School of Kinesiology, Auburn University, Auburn, AL, USA.

Michael D Roberts (MD)

School of Kinesiology, Auburn University, Auburn, AL, USA.
Edward Via College of Osteopathic Medicine, Auburn, AL, USA.

Andreas N Kavazis (AN)

School of Kinesiology, Auburn University, Auburn, AL, USA.

Classifications MeSH