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Exercise improves muscle mitochondrial dysfunction-associated lipid profile under circadian rhythm disturbance. | LitMetric

AI Article Synopsis

  • The study examined how endurance exercise training (EXT) can help mitigate health risks associated with disrupted circadian rhythms (CR) in both shift workers and experimentally affected rats.
  • Researchers found that CR disturbance leads to negative changes in skeletal muscle, including increased dyslipidemia and decreased mitochondrial functioning.
  • Results indicated that EXT can improve cholesterol levels and enhance mitochondrial biogenesis and antioxidant defenses, suggesting it may help lower cardiovascular risks associated with CR disruptions.

Article Abstract

We investigated whether endurance exercise training (EXT) ameliorates circadian rhythm (CR)-induced risk factors by improving skeletal muscle (SKM) mitochondrial biogenesis, reducing oxidative stress, and modulating apoptotic protein expression. We distinguished between regular and shift workers using the National Health and Nutrition Examination Survey (NHANES) and investigated the health problems caused by shift work (CR disturbance) and the potential therapeutic effects of exercise. In our animal study, 36 rats underwent 12 weeks of CR disturbance, divided into regular and irregular CR groups. These groups were further split into EXT (n = 12) and sedentary (n = 12) for an additional 8 weeks. We analyzed SKM tissue to understand the molecular changes induced by CR and EXT. NHANES data were analyzed using SAS 9.4 and Prism 8 software, while experimental animal data were analyzed using Prism 8 software. The statistical procedures used in each experiment are indicated in the figure legends. Our studies showed that CR disturbance increases dyslipidemia, alters circadian clock proteins (BMAL1, PER2), raises apoptotic protein levels, and reduces mitochondrial biogenesis in SKM. EXT improved LDL-C and HDLC levels without affecting muscle BMAL1 expression. It also enhanced mitochondrial biogenesis (AMPK, PGC-1α, Tfam, NADH-UO, COX-I), antioxidant levels (Catalase, SOD1, SOD2), and apoptotic protein (p53, Bax/Bcl2) expression or activity in SKM. We demonstrated that shift work-induced CR disturbance leads to dyslipidemia, diminished mitochondrial biogenesis, and reduced antioxidant capacity in SKM. However, EXT can counteract dyslipidemia under CR disturbance, potentially lowering the risk of cardiovascular disorders.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11519723PMC
http://dx.doi.org/10.4196/kjpp.2024.28.6.515DOI Listing

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