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Effect of oat bran on time to exhaustion, glycogen content and serum cytokine profile following exhaustive exercise

机译:饱和运动后燕麦麸对疲劳时间,糖原含量和血清细胞因子谱的影响

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摘要

Abstract\ud The aim of this study was to evaluate the effect of oat bran supplementation on time to exhaustion, glycogen stores and cytokines in rats submitted to training. The animals were divided into 3 groups: sedentary control group (C), an exercise group that received a control chow (EX) and an exercise group that received a chow supplemented with oat bran (EX-O). Exercised groups were submitted to an eight weeks swimming training protocol. In the last training session, the animals performed exercise to exhaustion, (e.g. incapable to continue the exercise). After the euthanasia of the animals, blood, muscle and hepatic tissue were collected. Plasma cytokines and corticosterone were evaluated. Glycogen concentrations was measured in the soleus and gastrocnemius muscles, and liver. Glycogen synthetase-α gene expression was evaluated in the soleus muscle. Statistical analysis was performed using a factorial ANOVA. Time to exhaustion of the EX-O group was 20% higher (515 ± 3 minutes) when compared with EX group (425 ± 3 minutes) (p = 0.034). For hepatic glycogen, the EX-O group had a 67% higher concentrations when compared with EX (p = 0.022). In the soleus muscle, EX-O group presented a 59.4% higher glycogen concentrations when compared with EX group (p = 0.021). TNF-α was decreased, IL-6, IL-10 and corticosterone increased after exercise, and EX-O presented lower levels of IL-6, IL-10 and corticosterone levels in comparison with EX group. It was concluded that the chow rich in oat bran increase muscle and hepatic glycogen concentrations. The higher glycogen storage may improve endurance performance during training and competitions, and a lower post-exercise inflammatory response can accelerate recovery.
机译:摘要\ ud这项研究的目的是评估燕麦麸补充对训练后大鼠精疲力竭,糖原储存和细胞因子的影响。将动物分为三组:久坐对照组(C),接受对照组食物(EX)的运动组和接受燕麦麸补充食物的运动组(EX-O)。运动组接受了为期八周的游泳训练方案。在最后一次训练中,动物进行了运动直至筋疲力尽(例如无法继续运动)。对动物实施安乐死后,收集血液,肌肉和肝组织。评估血浆细胞因子和皮质酮。测量比目鱼肌和腓肠肌以及肝脏中的糖原浓度。在比目鱼肌中评估糖原合成酶-α基因的表达。使用阶乘方差分析进行统计分析。与EX组(425±3分钟)相比,EX-O组的疲惫时间延长了20%(515±3分钟)(p = 0.034)。对于肝糖原,与EX相比,EX-O组的浓度高67%(p = 0.022)。在比目鱼肌中,EX-O组的糖原浓度比EX组高59.4%(p = 0.021)。与EX组相比,运动后TNF-α降低,IL-6,IL-10和皮质酮增加,并且EX-O的IL-6,IL-10和皮质酮水平降低。结论是富含燕麦麸的食物会增加肌肉和肝糖原的浓度。较高的糖原储存量可以改善训练和比赛期间的耐力表现,而较低的运动后炎症反应可以加速恢复。

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