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久坐和运动的雄性奥斯本-孟德尔大鼠的镁缺乏与血液2,3-二磷酸甘油酸浓度

Magnesium deficiency and blood 2,3-diphosphoglycerate concentrations in sedentary and exercised male Osborne-Mendel rats.

作者信息

Lowney P, Stern J S, Gershwin M E, Keen C L

机构信息

Biochemistry Research, Veterans Administration Medical Center, Martinez, CA.

出版信息

Metabolism. 1990 Aug;39(8):837-41. doi: 10.1016/0026-0495(90)90129-z.

Abstract

Magnesium deficiency lowers endurance capacity of untrained rats by an as yet unknown mechanism. We tested the hypothesis that low plasma and blood Mg concentrations would reduce blood 2,3-diphosphoglycerate (2,3-DPG) concentrations, thus diminishing the oxygen delivery system of the Mg-deficient rat. Untrained male Osborne-Mendel rats (95 g) were studied at rest or following exhaustive exercise after three weeks of dietary treatment (400 or 100 micrograms Mg/g diet; deionized or high Mg water [greater than 85 micrograms Mg/ml]). Magnesium deficiency resulted in lowered plasma and red blood cell (RBC) Mg concentrations and reduced endurance capacity compared with controls. Magnesium supplementation normalized these parameters. 2,3-DPG was elevated by 10% in rats acutely exercised compared with sedentary rats; however, 2,3-DPG levels were not affected by dietary Mg intake. Acute exercise tended to increase erythrocyte Mg concentrations in control rats and lower erythrocyte Mg levels in deficient rats. In conclusion, the reduced endurance capacity of Mg-deficient rats is not due to impaired 2,3-DPG production.

摘要

镁缺乏会通过一种尚不清楚的机制降低未经训练大鼠的耐力。我们检验了这样一个假设:低血浆和血液镁浓度会降低血液中2,3-二磷酸甘油酸(2,3-DPG)的浓度,从而削弱缺镁大鼠的氧气输送系统。对未经训练的雄性奥斯本-孟德尔大鼠(95克)在经过三周饮食处理(400或100微克镁/克饮食;去离子水或高镁水[大于85微克镁/毫升])后进行静息状态或力竭运动后的研究。与对照组相比,镁缺乏导致血浆和红细胞(RBC)镁浓度降低以及耐力下降。补充镁可使这些参数恢复正常。与久坐不动的大鼠相比,急性运动的大鼠2,3-DPG升高了10%;然而,2,3-DPG水平不受饮食镁摄入量的影响。急性运动往往会使对照大鼠的红细胞镁浓度升高,而使缺镁大鼠的红细胞镁水平降低。总之,缺镁大鼠耐力下降并非由于2,3-DPG生成受损。

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