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首页> 外文期刊>Frontiers in Nutrition >The Influence of Omega-3 Fatty Acids on Skeletal Muscle Protein Turnover in Health, Disuse, and Disease
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The Influence of Omega-3 Fatty Acids on Skeletal Muscle Protein Turnover in Health, Disuse, and Disease

机译:Omega-3脂肪酸对健康,停用和疾病中骨骼肌蛋白质周转的影响

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摘要

Ingestion of omega-3 fatty acids is known to exert favourable health effects on a number of biological processes such as improved immune profile, enhanced cognition, and optimised neuromuscular function. Recently, data have also emerged demonstrating a positive influence of omega-3 fatty acid intake on skeletal muscle. For instance, there are reports of clinically-relevant gains in muscle size and strength in healthy older persons with omega-3 fatty acid intake as well as evidence that omega-3 fatty acid ingestion alleviates the loss of muscle mass and prevents decrements in mitochondrial content during periods of muscle-disuse. Cancer cachexia that is characterized by a rapid involuntary loss of lean mass, has also been shown to be attenuated by omega-3 fatty acid provision. The primary means by which omega-3 fatty acids alter positively impact skeletal muscle mass is via incorporation of eicosapentaenoic acid (EPA; 20:5n-3) and docosahexaenoic acid (DHA; 22:6n-3) into membrane phospholipids of the sarcolemma and intracellular organelles. Enrichment of EPA and DHA in these membrane phospholipids is linked to enhanced rates of muscle protein synthesis, decreased expression of factors that regulate muscle protein breakdown, and improved mitochondrial respiration kinetics. However, exactly how incorporation of EPA and DHA into phospholipid membranes alters these processes remains unknown. In this review, we discuss the interaction between omega-3 fatty acid ingestion and skeletal muscle protein turnover in response to nutrient provision in younger and older adults. Additionally, we examine the role of omega-3 fatty acid supplementation in protecting muscle loss during muscle-disuse and in cancer cachexia, and critically evaluate the molecular mechanisms that underpin the phenotypic changes observed in skeletal muscle with omega-3 fatty acid intake.
机译:已知摄入Omega-3脂肪酸会对许多生物学过程产生有利的健康影响,例如改善的免疫状况,增强的认知能力和优化的神经肌肉功能。最近,也有数据表明,摄入Omega-3脂肪酸对骨骼肌有积极影响。例如,有报道称,摄入Omega-3脂肪酸的健康老年人的肌肉大小和强度在临床上具有相关性,并且有证据表明,摄入Omega-3脂肪酸可减轻肌肉质量的损失并防止线粒体含量减少在肌肉停用期间。还显示以ω3脂肪酸的供应减弱了以恶性质的迅速非自愿损失为特征的癌症恶病质。 ω-3脂肪酸改变正面影响骨骼肌质量的主要方法是将二十碳五烯酸(EPA; 20:5n-3)和二十二碳六烯酸(DHA; 22:6n-3)掺入肌膜的膜磷脂中。细胞内细胞器。这些膜磷脂中EPA和DHA的富集与肌肉蛋白质合成速率的提高,调节肌肉蛋白质分解因子的表达降低以及线粒体呼吸动力学改善有关。然而,究竟如何将EPA和DHA掺入磷脂膜仍不清楚这些过程。在这篇综述中,我们讨论了在年轻人和老年人中,Omega-3脂肪酸的摄入与骨骼肌蛋白更新之间的相互作用,以响应营养提供。此外,我们检查了补充omega-3脂肪酸在保护肌肉废用和癌症恶病质中的肌肉损失中的作用,并严格评估了在摄入omega-3脂肪酸的骨骼肌中观察到的表型变化的分子机制。

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