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Influence of omega-3 fatty acids on skeletal muscle protein metabolism and mitochondrial bioenergetics in older adults

机译:Omega-3脂肪酸对老年人骨骼肌蛋白质代谢和线粒体生物能的影响

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摘要

Omega-3 polyunsaturated fatty acids (n3-PUFA) are recognized for their anti-inflammatory effects and may be beneficial in the context of sarcopenia. We determined the influence of n3-PUFA on muscle mitochondrial physiology and protein metabolism in older adults. Twelve young (18-35 years) and older (65-85 years) men and women were studied at baseline. Older adults were studied again following n3-PUFA supplementation (3.9g/day, 16 weeks). Muscle biopsies were used to evaluate respiratory capacity (high resolution respirometry) and oxidant emissions (spectrofluorometry) in isolated mitochondria. Maximal respiration was significantly lower in older compared to young. n3-PUFA did not change respiration, but significantly reduced oxidant emissions. Participants performed a single bout of resistance exercise, followed by biopsies at 15 and 18 hours post exercise. Several genes involved in muscle protein turnover were significantly altered in older adults at baseline and following exercise, yet muscle protein synthesis was similar between age groups under both conditions. Following n3-PUFA supplementation, mixed muscle, mitochondrial, and sarcoplasmic protein synthesis rates were increased in older adults before exercise. n3-PUFA increased post-exercise mitochondrial and myofibrillar protein synthesis in older adults. These results demonstrate that n3-PUFA reduce mitochondrial oxidant emissions, increase postabsorptive muscle protein synthesis, and enhance anabolic responses to exercise in older adults.
机译:Omega-3多不饱和脂肪酸(n3-PUFA)具有抗炎作用,在少肌症的背景下可能有益。我们确定了n3-PUFA对老年人肌肉线粒体生理和蛋白质代谢的影响。在基线研究了十二名年轻人(18-35岁)和年龄更大(65-85岁)的男女。补充n3-PUFA后(3.9g /天,16周)再次对老年人进行研究。肌肉活检用于评估孤立的线粒体中的呼吸能力(高分辨率呼​​吸测定法)和氧化剂排放量(荧光光谱法)。与年轻人相比,老年人的最大呼吸频率明显降低。 n3-PUFA不会改变呼吸,但会大大减少氧化剂的排放。参与者进行了一次抵抗运动,然后在运动后15和18小时进行了活检。在基线和运动后的老年人中,涉及肌肉蛋白质更新的几个基因发生了显着变化,但在两种情况下,不同年龄组的肌肉蛋白质合成相似。补充n3-PUFA后,老年人运动前的混合肌肉,线粒体和肌浆蛋白的合成速率增加。 n3-PUFA增加老年人运动后的线粒体和肌原纤维蛋白合成。这些结果表明,n3-PUFA减少了线粒体氧化剂的排放,增加了吸收后肌肉蛋白质的合成,并增强了老年人的合成代谢反应。

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