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Dietary protein and exercise training in ageing

机译:衰老中的饮食蛋白质和运动训练

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Ageing is accompanied by a progressive loss of skeletal muscle mass and strength, leading to the loss of functional capacity and an increased risk for developing chronic metabolic diseases such as diabetes. The age-related loss of skeletal muscle mass results from a chronic disruption in the balance between muscle protein synthesis and degradation. As basal muscle protein synthesis rates are likely not different between healthy young and elderly human subjects, it was proposed that muscles from older adults lack the ability to regulate the protein synthetic response to anabolic stimuli, such as food intake and physical activity. Indeed, the dosea€“response relationship between myofibrillar protein synthesis and the availability of essential amino acids and/or resistance exercise intensity is shifted down and to the right in elderly human subjects. This so-called a€?anabolic resistancea€? represents a key factor responsible for the age-related decline in skeletal muscle mass. Interestingly, long-term resistance exercise training is effective as a therapeutic intervention to augment skeletal muscle mass, and improves functional performance in the elderly. The consumption of different types of proteins, i.e. protein hydrolysates, can have different stimulatory effects on muscle protein synthesis in the elderly, which may be due to their higher rate of digestion and absorption. Current research aims to elucidate the interactions between nutrition, exercise and the skeletal muscle adaptive response that will define more effective strategies to maximise the therapeutic benefits of lifestyle interventions in the elderly.
机译:衰老伴随着骨骼肌质量和强度的逐渐丧失,从而导致功能能力的丧失和患慢性代谢性疾病(如糖尿病)的风险增加。与年龄相关的骨骼肌质量损失是由于肌肉蛋白质合成与降解之间的平衡受到长期破坏所致。由于健康的年轻人和老年人之间的基础肌肉蛋白质合成率可能没有差异,因此提出了老年人的肌肉缺乏调节蛋白质合成代谢对合成代谢刺激(例如食物摄入和身体活动)的反应的能力。确实,在老年受试者中,肌纤维蛋白合成与必需氨基酸的可用性和/或抵抗运动强度之间的剂量反应关系向右下移。这就是所谓的“合成代谢阻力”。代表与年龄相关的骨骼肌质量下降的关键因素。有趣的是,长期的抵抗运动训练是有效的治疗手段,可以增加骨骼肌质量,并改善老年人的功能表现。消耗不同类型的蛋白质(即蛋白质水解物)对老年人的肌肉蛋白质合成可能具有不同的刺激作用,这可能是由于它们较高的消化吸收率所致。当前的研究旨在阐明营养,运动与骨骼肌适应性反应之间的相互作用,从而确定更有效的策略,以最大限度地提高老年人生活方式干预的治疗益处。

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