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Influence of Local Muscle Cooling on Mitochondrial-Related Gene Expression at Rest

Author

Listed:
  • Larry Robins

    (School of Health and Kinesiology, University of Nebraska at Omaha, Omaha, NE 68182, USA)

  • Monica Kwon

    (School of Health and Kinesiology, University of Nebraska at Omaha, Omaha, NE 68182, USA)

  • Mark L. McGlynn

    (School of Health and Kinesiology, University of Nebraska at Omaha, Omaha, NE 68182, USA)

  • Alejandro M. Rosales

    (School of Health and Kinesiology, University of Nebraska at Omaha, Omaha, NE 68182, USA
    School of Integrated Physiology and Athletic Training, University of Montana, Missoula, MT 59812, USA)

  • Elizabeth J. Pekas

    (School of Health and Kinesiology, University of Nebraska at Omaha, Omaha, NE 68182, USA)

  • Christopher Collins

    (School of Health and Kinesiology, University of Nebraska at Omaha, Omaha, NE 68182, USA)

  • Song-Young Park

    (School of Health and Kinesiology, University of Nebraska at Omaha, Omaha, NE 68182, USA)

  • Dustin R. Slivka

    (School of Health and Kinesiology, University of Nebraska at Omaha, Omaha, NE 68182, USA
    School of Integrated Physiology and Athletic Training, University of Montana, Missoula, MT 59812, USA)

Abstract

The purpose of this study was to determine the impact of localized cooling of the skeletal muscle during rest on mitochondrial related gene expression. Thermal wraps were applied to the vastus lateralis of each limb of 12 participants. One limb received a cold application (randomized) (COLD), while the other did not (RT). Wraps were removed at the 4 h time point and measurements of skin temperature, blood flow, and intramuscular temperature were taken prior to a muscle biopsy. RT-qPCR was used to measure expression of genes associated with mitochondrial development. Skin and muscle temperatures were lower in COLD than RT ( p < 0.05). Femoral artery diameter was lower in COLD after 4 h (0.62 ± 0.05 cm, to 0.60 ± 0.05 cm, p = 0.018). Blood flow was not different in COLD compared to RT (259 ± 69 mL·min –1 vs. 275 ± 54 mL·min –1 , p = 0.20). PGC-1α B and GABPA expression was higher in COLD relative to RT (1.57-fold, p = 0.037 and 1.34-fold, p = 0.006, respectively). There was no difference ( p > 0.05) in the expression of PGC-1α , NT-PGC-1α , PGC-1α A , TFAM , ESRRα , NRF1 , GABPA , VEGF , PINK1 , PARK 2 , or BNIP3-L . The impact of this small magnitude of difference in gene expression of PGC-1α B and GABPA without alterations in other genes are unknown. There appears to be only limited impact of local muscle cooling on the transcriptional response related to mitochondrial development.

Suggested Citation

  • Larry Robins & Monica Kwon & Mark L. McGlynn & Alejandro M. Rosales & Elizabeth J. Pekas & Christopher Collins & Song-Young Park & Dustin R. Slivka, 2022. "Influence of Local Muscle Cooling on Mitochondrial-Related Gene Expression at Rest," IJERPH, MDPI, vol. 19(19), pages 1-10, September.
  • Handle: RePEc:gam:jijerp:v:19:y:2022:i:19:p:12028-:d:922826
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    Keywords

    temperature; PGC1- α ; GABPA; mRNA; cold;
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