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Dietary fish oil reduces skeletal muscle oxygen consumption, provides fatigue resistance and improves contractile recovery in the rat in vivo hindlimb

机译:日粮鱼油可减少骨骼肌耗氧量,提供抗疲劳性并改善大鼠体内后肢的收缩恢复

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摘要

Dietary fish oil modulates skeletal muscle membrane fatty acid composition. Similar changes in heart membrane composition modulate myocardial oxygen consumption and enhance mechanical performance. The rat in vivo autologous perfused hindlimb was used to investigate the influence of membrane composition on skeletal muscle function. Male Wistar rats were fed either saturated fat (SF), n-6 PUFA (linoleic acid rich) or n-3 PUFA (fish oil) diets for 8 weeks. Hindlimb skeletal muscle perfused using the animal’s own blood was stimulated via the sciatic nerve (1 Hz, 6-12 V, 0·05 ms) to contract in repeated 10 min bouts. The n-3 PUFA diet markedly increased 22 : 6n-3 DHA, total n-3 PUFA and decreased the n-6:n-3 PUFA ratio (P,0·05) in red and white skeletal muscle membranes. There was no difference in initial twitch tension but the n-3 PUFA group maintained greater twitch tension within all contraction bouts and recovered better during rest to produce greater twitch tension throughout the final contraction bout (P,0·05). Hindlimb oxygen consumption during contraction was significantly lower in the n-3 PUFA group compared with the SF group, producing a significantly higher O2 efficiency index compared with both SF and n-6 PUFA groups (P,0·05). Resting oxygen consumption was increased in recovery in the SF group (P,0·05) but did not change in the n-3 PUFA group. Membrane incorporation of n-3 PUFA DHA following fish oil feeding was associated with increased efficiency of muscle O2 consumption and promoted resistance to muscle fatigue.
机译:膳食鱼油可调节骨骼肌膜脂肪酸组成。心脏膜成分的类似变化可调节心肌耗氧量并增强机械性能。大鼠体内自体后肢灌流用于研究膜组成对骨骼肌功能的影响。给雄性Wistar大鼠喂食饱和脂肪(SF),n-6 PUFA(富含亚油酸)或n-3 PUFA(鱼油)饮食8周。通过坐骨神经(1 Hz,6-12 V,0·05 ms)刺激使用动物自身血液灌注的后肢骨骼肌,重复进行10分钟。 n-3 PUFA日粮在红色和白色骨骼肌膜中显着增加22:6n-3 DHA,总n-3 PUFA并降低n-6:n-3 PUFA比值(P,0·05)。初始抽搐张力没有差异,但是n-3 PUFA组在所有收缩回合中均保持较高的抽搐张力,并在休息期间恢复得更好,从而在整个最终收缩回合中均产生较大的抽搐张力(P,0·05)。与SF组相比,n-3 PUFA组收缩期间的后肢耗氧量显着降低,与SF组和n-6 PUFA组相比,产生的O2效率指数均显着更高(P,0·05)。 SF组恢复时静息耗氧量增加(P,0·05),n-3 PUFA组则没有变化。鱼油喂养后膜中掺入n-3 PUFA DHA与增加肌肉消耗氧气的效率和增强的抗肌肉疲劳能力有关。

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