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Exercise Ameliorates Spinal Cord Injury by Changing DNA Methylation

脊髓损伤 运动皮层 表观遗传学 医学 脊髓 DNA甲基化 皮质(解剖学) 病变 神经科学 内科学 生物 病理 基因表达 基因 生物化学 刺激
作者
Ganchimeg Davaa,Jin Young Hong,Tae Uk Kim,Seong Jae Lee,Seo‐Young Kim,Kwonho Hong,Jung Keun Hyun
出处
期刊:Cells [Multidisciplinary Digital Publishing Institute]
卷期号:10 (1): 143-143 被引量:18
标识
DOI:10.3390/cells10010143
摘要

Exercise training is a traditional method to maximize remaining function in patients with spinal cord injury (SCI), but the exact mechanism by which exercise promotes recovery after SCI has not been identified; whether exercise truly has a beneficial effect on SCI also remains unclear. Previously, we showed that epigenetic changes in the brain motor cortex occur after SCI and that a treatment leading to epigenetic modulation effectively promotes functional recovery after SCI. We aimed to determine how exercise induces functional improvement in rats subjected to SCI and whether epigenetic changes are engaged in the effects of exercise. A spinal cord contusion model was established in rats, which were then subjected to treadmill exercise for 12 weeks. We found that the size of the lesion cavity and the number of macrophages were decreased more in the exercise group than in the control group after 12 weeks of injury. Immunofluorescence and DNA dot blot analysis revealed that levels of 5-methylcytosine (5mC) and 5-hydroxymethylcytosine (5hmC) in the brain motor cortex were increased after exercise. Accordingly, the expression of ten-eleven translocation (Tet) family members (Tet1, Tet2, and Tet3) in the brain motor cortex also elevated. However, no macrophage polarization was induced by exercise. Locomotor function, including Basso, Beattie, and Bresnahan (BBB) and ladder scores, also improved in the exercise group compared to the control group. We concluded that treadmill exercise facilitates functional recovery in rats with SCI, and mechanistically epigenetic changes in the brain motor cortex may contribute to exercise-induced improvements.

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