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Postexercise essential amino acid supplementation amplifies skeletal muscle satellite cell proliferation in older men 24 hours postexercise

  • Paul T. Reidy
  • , Christopher S. Fry
  • , Jared M. Dickinson
  • , Micah J. Drummond
  • , Blake B. Rasmussen

Producción científica: Articlerevisión exhaustiva

16 Citas (Scopus)

Resumen

Aged skeletal muscle has an attenuated and delayed ability to proliferate satellite cells in response to resistance exercise. The mechanistic target of rapamycin complex 1 (mTORC1) signaling pathway is a focal point for cell growth, however, the effect of postexercise mTORC1 activation on human skeletal muscle satellite cell (SC) proliferation is unknown. To test the proliferative capacity of skeletal muscle SC in aging muscle to a potent mTORC1 activator (i.e., EAA; essential amino acids) we recruited older (~72y) men to conduct leg resistance exercise (8setsx10reps) without (−EAA; n = 8) and with (+EAA: n = 11) ingestion of 10 g of EAA 1 h postexercise. Muscle biopsies were taken before exercise (Pre) and 24 h postexercise (Post) for assessment of expression and fiber type-specific Pax7+ SC, Ki67+Pax7+ SC and MyoD+ SC. −EAA did not show an increase in Pax7+ satellite cells at Post(P > 0.82). Although statistical significance for an increase in Pax7 + SC at 24 h post-RE was not observed in +EAA versus −EAA, we observed trends for a treatment difference (P < 0.1). When examining the change from Pre to Post trends were demonstrated (#/myofiber: P = 0.076; and %/myonuclei: P = 0.065) for a greater increase in +EAA versus −EAA. Notably, we found an increase SC proliferation in +EAA, but not −EAA with increase in Ki67+ SC and MyoD+ cells (P < 0.05). Ki67+ SC also exhibited a significant group difference Post (P < 0.010). Pax7+ SC in fast twitch myofibers did not change and were not different between groups (P > 0.10). CDK2, MEF2C, RB1 mRNA only increased in +EAA (P < 0.05). Acute muscle satellite cell proliferative capacity may be partially rescued with postexercise EAA ingestion in older men.

Idioma originalEnglish
Número de artículoe13269
PublicaciónPhysiological Reports
Volumen5
N.º11
DOI
EstadoPublished - jun 2017

Nota bibliográfica

Publisher Copyright:
© 2017 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of The Physiological Society and the American Physiological Society

Financiación

Funding Informtion This project is supported by a grant from National Institutes of Health R01 AR49877, T32-HD07539, P30-AG024832, NIDRR H133P110012 and in part by a NIH Clinical and Translational Science Award 5UL1TR001439-02 from the National Center for Advancing Translational Sciences. B.B.R., J.M.D, P.T.R., M.J.D., and C.S.F., designed the research; B.B.R., J.M.D, M.J.D. P.T.R., and C.S.F, conducted research; B.B.R., J.M.D, P.T.R, M.J.D., and C.S.F., reviewed the manuscript; B.B.R., J.M.D, M.J.D, P.T.R., and C.S.F. analyzed data; and B.B.R., J.M.D, M.J.D, P.T.R., and C.S.F., wrote the manuscript and had primary responsibility for final content. We wish to thank the Clinical Research staff of the Institute for Translational Sciences Clinical Research Center at UTMB for assisting in screening and consenting patients and participants and for assisting in data collection. Current Affiliations: College of Health Solutions, School of Nutrition and Health Promotion, Arizona State University, Phoenix, AZ, U.S.A. (JMD); Department of Physical Therapy, University of Utah, Salt Lake City, Utah 84112 (PTR and MDJ).

FinanciadoresNúmero del financiador
School of Nutrition and Health Promotion
National Institutes of Health (NIH)P30-AG024832, T32-HD07539, R01 AR49877, 5UL1TR001439-02
National Center for Advancing Translational Sciences (NCATS)
National Institute of Disability, Independent Living, and Rehabilitation Research (NIDILRR)H133P110012
Arizona State University
University of Utah Health84112
University of Texas Medical Branch
Department of Physical Therapy, University of Nevada, Las Vegas

    ASJC Scopus subject areas

    • Physiology
    • Physiology (medical)

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