去训练型对C57BL/6雄性小鼠骨骼肌端粒长度及trf1和TRF2基因表达的影响

Mostafa Khodadoost, S. Shakerian, S. Arjmand, M. Nikbakht
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摘要

背景与目的:探讨久坐生活方式对小鼠骨骼肌端粒系统的影响。方法:选取C57BL/6小鼠24只,随机分为基础对照组(n=6)、对照组(n=6)、LIIT组(n=6)和HIIT组(n=6)。这项运动包括每周五天,持续8周,然后保持4周的不活动。提取DNA和RNA后,采用Real - time-PCR法测定因子。采用双因素方差分析对数据进行评价。结果:本研究结果显示,TRF1基因在ST肌和FT肌中的表达(P=0.825)、久坐生活方式(P=0.062)以及肌肉类型与久坐生活方式之间的相互作用(P=0.408)无显著差异。TRF2基因在ST肌和FT肌、久坐生活方式(P=0.309)、肌肉类型与久坐生活方式之间的相互作用(P=0.093)中表达差异无统计学意义(P=0.073)。总的来说,ST肌和FT肌端粒长度、久坐生活方式(P=0.053)和肌肉类型与久坐生活方式的交互作用(P=0.651)之间无显著差异(P=0.763)。结论:采用久坐的生活方式,包括高强度和低强度运动后的不活动,对两种肌肉的骨骼肌端粒系统的影响相同。似乎不运动对经历过不同强度运动的人的影响对骨骼肌组织的类型没有不同的影响。
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Effect of Detraining Type on Telomere Length and TRF1& TRF2 Gene Expression of Skeletal Muscle in C57BL/6 Male Mice
Background and Objective: The aim this study was to investigate the effect of sedentary lifestyle on Telomere system of mice skeletal muscle. Methods: The subjects were C57BL/6 mice (n=24) that were randomly divided into four groups: Base control (n=6), control (n=6), LIIT (n=6), and HIIT (n=6) groups. The exercise includes 5 days a week for 8 weeks and then kept inactive for 4 weeks. The factors were measured after DNA and RNA extraction using Real time-PCR method. The data were evaluated using two-way ANOVA test. Results: The results of this study showed that there wasn’t a significant difference between the expression of TRF1 gene in ST and FT muscles (P=0.825), sedentary lifestyle type (P=0.062) and the interaction between muscle type and sedentary lifestyle type (P=0.408). There was no significant difference between the expression of TRF2 gene in ST and FT muscles (P=0.073), sedentary lifestyle type (P=0.309) and the interaction between muscle type and sedentary lifestyle type (P=0.093). In general, There was no significant difference between the telomere length in ST and FT muscles (P=0.763), sedentary lifestyle type (P=0.053) and the interaction between muscle type and sedentary lifestyle type (P=0.651). Conclusion: Applying sedentary lifestyle types, including inactivity after High and low-intensity exercise, affects the telomere system in skeletal muscle in both muscles the same. It seems that the effect of inactivity in people with an experience of exercise with different intensities does not have a different effect on the type of skeletal muscle tissue.
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