Speich M, Pineau A, Ballereau F
Département de Santé Publique et de Pharmacie Clinique, Faculté de Pharmacie, Université de Nantes, l, rue Gaston Veil, B.P. 53508, F-44035 Cedex 1, Nantes, France.
Clin Chim Acta. 2001 Oct;312(1-2):1-11. doi: 10.1016/s0009-8981(01)00598-8.
This review concerns various minerals (sodium, potassium, calcium, magnesium, phosphorus), trace elements (zinc, manganese, selenium, copper, iron, cobalt, iodine, chromium, fluorine, lead, cadmium) and other biological variables (nitric oxide, L-carnitine, glutamine, serum transferrin receptor, biopyrrins) in relation to hemorheologic effects, stress, immune response and infections during physical and sports activities. In athletes, macroelements in the ionized form contribute to heart and muscle contractions, oxidative phosphorylation and the synthesis and activation of enzymatic systems. Zinc (Zn) protects against the effects of increased free reactive oxygen species such as copper (Cu) and manganese (Mn) (Cu-Zn superoxide dismutases; Mn superoxide dismutase). Selenium in glutathione peroxidase protects the cardiovascular system and the muscles, and helps combat allergic and inflammatory diseases. Copper and iron are involved in many aspects of energy metabolism and are important components in the synthesis of hemoglobin, myoglobin and cytochromes. Fluorine and Cu protect the ligaments and tendons. Physical activity appears to be beneficial to urban residents who are exposed to metal pollution (lead, cadmium). The data cited in this review are often contradictory and incomplete. It is still unclear in many cases how minerals are involved in physiological changes, and much work remains.
本综述涉及各种矿物质(钠、钾、钙、镁、磷)、微量元素(锌、锰、硒、铜、铁、钴、碘、铬、氟、铅、镉)以及其他生物变量(一氧化氮、L-肉碱、谷氨酰胺、血清转铁蛋白受体、血卟啉)与体育活动期间血液流变学效应、应激、免疫反应和感染的关系。在运动员中,离子化形式的常量元素有助于心脏和肌肉收缩、氧化磷酸化以及酶系统的合成与激活。锌(Zn)可抵御诸如铜(Cu)和锰(Mn)等增加的游离活性氧的影响(铜锌超氧化物歧化酶;锰超氧化物歧化酶)。谷胱甘肽过氧化物酶中的硒可保护心血管系统和肌肉,并有助于对抗过敏性和炎症性疾病。铜和铁参与能量代谢的许多方面,并且是血红蛋白、肌红蛋白和细胞色素合成中的重要成分。氟和铜可保护韧带和肌腱。体育活动似乎对暴露于金属污染(铅、镉)的城市居民有益。本综述中引用的数据往往相互矛盾且不完整。在许多情况下,矿物质如何参与生理变化仍不清楚,还有很多工作要做。