Koopman René, Caldow Marissa K, Ham Daniel J, Lynch Gordon S
Basic and Clinical Myology Laboratory, Department of Physiology, University of Melbourne, Melbourne, Victoria, Australia.
Curr Opin Clin Nutr Metab Care. 2017 Jul;20(4):237-242. doi: 10.1097/MCO.0000000000000383.
The review summarizes the recent literature on the role of glycine in skeletal muscle during times of stress.
Supplemental glycine protects muscle mass and function under pathological conditions. In addition, mitochondrial dysfunction in skeletal muscle leads to increased cellular serine and glycine production and activation of NADPH-generating pathways and glutathione metabolism. These studies highlight how glycine availability modulates cellular homeostasis and redox status.
Recent studies demonstrate that supplemental glycine effectively protects muscles in a variety of wasting models, including cancer cachexia, sepsis, and reduced caloric intake. The underlying mechanisms responsible for the effects of glycine remain unclear but likely involve receptor-mediated responses and modulation of intracellular metabolism. Future research to understand these mechanisms will provide insight into glycine's therapeutic potential. Our view is that glycine holds considerable promise for improving health by protecting muscles during different wasting conditions.
本综述总结了近期关于应激期间甘氨酸在骨骼肌中作用的文献。
补充甘氨酸可在病理条件下保护肌肉质量和功能。此外,骨骼肌中的线粒体功能障碍会导致细胞内丝氨酸和甘氨酸生成增加以及生成NADPH的途径和谷胱甘肽代谢的激活。这些研究突出了甘氨酸的可利用性如何调节细胞内稳态和氧化还原状态。
近期研究表明,补充甘氨酸可在多种消瘦模型中有效保护肌肉,包括癌症恶病质、脓毒症和热量摄入减少。甘氨酸产生这些作用的潜在机制尚不清楚,但可能涉及受体介导的反应和细胞内代谢的调节。未来旨在了解这些机制的研究将为甘氨酸的治疗潜力提供深入见解。我们认为,甘氨酸在不同消瘦状况下通过保护肌肉对改善健康具有巨大潜力。