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Endurance Training Inhibits the JAK2/STAT3 Pathway to Alleviate Sarcopenia
B. Yao, L. Li, X. Guan, J. Zhu, Q. Liu, B. Qu, H. Ding
Status minimal Language English Country Czech Republic
Document type Journal Article
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- MeSH
- Janus Kinase 2 * metabolism MeSH
- Physical Conditioning, Animal * physiology MeSH
- Muscle, Skeletal metabolism MeSH
- Mice MeSH
- Sarcopenia * metabolism prevention & control therapy MeSH
- Signal Transduction * MeSH
- Aging metabolism MeSH
- STAT3 Transcription Factor * metabolism MeSH
- Endurance Training * MeSH
- Animals MeSH
- Check Tag
- Male MeSH
- Mice MeSH
- Animals MeSH
- Publication type
- Journal Article MeSH
Aging leads to a decrease in muscle function, mass, and strength in skeletal muscle of animals and humans. The transcriptome identified activation of the JAK/STAT pathway, a pathway that is associated with skeletal muscle atrophy, and endurance training has a significant effect on improving sarcopenia; however, the exact mechanism still requires further study. We investigated the effect of endurance training on sarcopenia. Six-month-old male SAMR1 mice were used as a young control group (group C), and the same month-old male SAMP8 mice were divided into an exercise group (group E) and a model group (group M). A 3-month running exercise intervention was performed on group E, and the other two groups were kept normally. Aging caused significant signs of sarcopenia in the SAMP8 mice, and endurance training effectively improved muscle function, muscle mass, and muscle strength in the SAMP8 mice. The expression of JAK2/STAT3 pathway factor was decreased in group E compared with group M, and the expression of SOCS3, the target gene of STAT3, and NR1D1, an atrophy-related factor, was significantly increased. Endurance training significantly improved the phenotypes associated with sarcopenia, and the JAK2/STAT3 pathway is a possible mechanism for the improvement of sarcopenia by endurance training, while NR1D1 may be its potential target. Keywords: Sarcopenia, Endurance training, Janus kinase 2/signal transducer and activator of transcription 3 (JAK2/STAT3), Nuclear receptor subfamily 1, group D member 1 (Nr1d1).
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