Circadian disruption causes glucose intolerance, cardiac fibrosis, and adipocyte dysfunction in sand rats (). Exercise intervention can improve glucose metabolism, insulin sensitivity, adipose tissue function and protect against inflammation. We investigated the influence of exercise on male exposed to a short photoperiod (5 h light:19 h dark) and high-energy diet. Exercise reduced glucose intolerance. Exercise reduced cardiac expression of inflammatory marker and : apoptosis ratio. Exercise increased heart:body weight ratio and hypertrophy marker :, yet reduced expression. No phenotypic changes were observed in perivascular fibrosis and myocyte area. Exercise reduced visceral adipose expression of inflammatory transcription factor , adipogenesis marker and browning marker but visceral adipocyte size was unaffected. Conversely, exercise reduced subcutaneous adipocyte size but did not affect any molecular mediators. Exercise increased ZT7 and in the suprachiasmatic nucleus and subcutaneous . Our study provides new molecular insights and histological assessments on the effect of exercise on cardiac inflammation, adipose tissue dysfunction and circadian gene expression in exposed to short photoperiod and high-energy diet. These findings have implications for the protective benefits of exercise for shift workers in order to reduce the risk of diabetes and cardiovascular disease.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11277119PMC
http://dx.doi.org/10.3390/ijms25147756DOI Listing

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