Literature DB >> 33384723

The Peripheral Circadian Clock and Exercise: Lessons from Young and Old Mice.

Danielle R Bruns1, Musharraf Yusifova1, Nicholas A Marcello1, Carly J Green1, Whitney J Walker1, Emily E Schmitt1.   

Abstract

Critical biological processes are under control of the circadian clock. Disruption of this clock, e.g. during aging, results in increased risk for development of chronic disease. Exercise is a protective intervention that elicits changes in both age and circadian pathologies, yet its role in regulating circadian gene expression in peripheral tissues is unknown. We hypothesized that voluntary wheel running would restore disrupted circadian rhythm in aged mice. We analyzed wheel running patterns and expression of circadian regulators in male and female C57Bl/6J mice in adult (~4 months) and old (~18 months) ages. As expected, young female mice ran further than male mice, and old mice ran significantly less than young mice. Older mice of both sexes had a delayed start time in activity which likely points to a disrupted diurnal running pattern and circadian disruption. Voluntary wheel running rescued some circadian dysfunction in older females. This effect was not present in older males, and whether this was due to low wheel running distance or circadian output is not clear and warrants a future study. Overall, we show that voluntary wheel running can rescue some circadian dysfunction in older female but not male mice; and these changes are tissue dependent. While voluntary running was not sufficient to fully rescue age-related changes in circadian rhythm, ongoing studies will determine if forced exercise (e.g. treadmill) and/or chrono-timed exercise can improve age-related cardiovascular, skeletal muscle, and circadian dysfunction. Copyright:
© 2020 The Author(s).

Entities:  

Keywords:  aging; circadian rhythm; exercise

Year:  2020        PMID: 33384723      PMCID: PMC7757608          DOI: 10.5334/jcr.201

Source DB:  PubMed          Journal:  J Circadian Rhythms        ISSN: 1740-3391


  32 in total

Review 1.  A clockwork web: circadian timing in brain and periphery, in health and disease.

Authors:  Michael H Hastings; Akhilesh B Reddy; Elizabeth S Maywood
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Journal:  Cell Metab       Date:  2019-04-18       Impact factor: 27.287

Review 4.  Circadian rhythms, time-restricted feeding, and healthy aging.

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Authors:  Roman V Kondratov; Anna A Kondratova; Victoria Y Gorbacheva; Olena V Vykhovanets; Marina P Antoch
Journal:  Genes Dev       Date:  2006-07-15       Impact factor: 11.361

6.  Temporal profile of circadian clock gene expression in a transplanted suprachiasmatic nucleus and peripheral tissues.

Authors:  Mitsugu Sujino; Mamoru Nagano; Atsuko Fujioka; Yasufumi Shigeyoshi; Shin-Ichi T Inouye
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7.  Methods to record circadian rhythm wheel running activity in mice.

Authors:  Sandra M Siepka; Joseph S Takahashi
Journal:  Methods Enzymol       Date:  2005       Impact factor: 1.600

8.  Free access to a running-wheel advances the phase of behavioral and physiological circadian rhythms and peripheral molecular clocks in mice.

Authors:  Yuki Yasumoto; Reiko Nakao; Katsutaka Oishi
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Review 9.  Cardioprotection acquired through exercise: the role of ischemic preconditioning.

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Journal:  Curr Cardiol Rev       Date:  2014-11

10.  Association of Cardiorespiratory Fitness With Long-term Mortality Among Adults Undergoing Exercise Treadmill Testing.

Authors:  Kyle Mandsager; Serge Harb; Paul Cremer; Dermot Phelan; Steven E Nissen; Wael Jaber
Journal:  JAMA Netw Open       Date:  2018-10-05
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Review 2.  Circadian effects on UV-induced damage and mutations.

Authors:  Donna Goodenow; Adam J Greer; Sean J Cone; Shobhan Gaddameedhi
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3.  Transcriptomic analysis of cardiac gene expression across the life course in male and female mice.

Authors:  Aykhan Yusifov; Vikram E Chhatre; Eva K Koplin; Cortney E Wilson; Emily E Schmitt; Kathleen C Woulfe; Danielle R Bruns
Journal:  Physiol Rep       Date:  2021-07
  3 in total

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