Mary Emily Clinical Nutrition Research Unit, School of Dietetics and Human Nutrition, Faculty of Agricultural and Environmental Sciences, McGill University, Ste-Anne-de-Bellevue, Quebec, Canada.
Nutr Rev. 2012 Sep;70(9):520-33. doi: 10.1111/j.1753-4887.2012.00510.x.
Many children may have insufficient serum concentrations of vitamin D, which could prevent optimal muscle development and function. Vitamin D deficiency in animal models results in negative effects on muscle fiber structure and calcium/phosphorus handling, suggesting an integral role of vitamin D in skeletal muscle function. While there is a dearth of data in humans, the available evidence demonstrates a positive association between vitamin D status and muscle function. This review focuses on the important role of vitamin D in muscle function in children and adolescents who live in North American regions where exposure to ultraviolet B radiation is limited and who are thus at increased risk for vitamin D insufficiency. The effects of vitamin D on muscle cell proliferation and differentiation, muscle fiber structure, and calcium and phosphorus handling are discussed. Moreover, the roles of vitamin D and the vitamin D receptor and their genomic and nongenomic actions in muscle function are explored in depth. Future research should aim to establish a vitamin D status consistent with optimal musculoskeletal development and function in young children.
许多儿童可能存在血清维生素 D 浓度不足的情况,这可能会妨碍其肌肉的最佳发育和功能。动物模型中的维生素 D 缺乏会对肌肉纤维结构和钙/磷处理产生负面影响,这表明维生素 D 在骨骼肌肉功能中具有重要作用。尽管人类的数据匮乏,但现有证据表明维生素 D 状态与肌肉功能之间存在正相关关系。本综述重点介绍了生活在北美的儿童和青少年中维生素 D 的重要作用,这些地区的儿童和青少年暴露在紫外线 B 辐射下有限,因此维生素 D 不足的风险增加。本文讨论了维生素 D 对肌肉细胞增殖和分化、肌肉纤维结构以及钙和磷处理的影响。此外,还深入探讨了维生素 D 和维生素 D 受体及其在肌肉功能中的基因组和非基因组作用。未来的研究应旨在确定与幼儿最佳骨骼肌肉发育和功能相一致的维生素 D 状态。