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模拟微重力环境下动物的葡萄糖和蛋白质代谢变化

Alterations in glucose and protein metabolism in animals subjected to simulated microgravity.

作者信息

Mondon C E, Rodnick K J, Dolkas C B, Azhar S, Reaven G M

机构信息

VA Medical Center, Geriatric Research, Education and Clinical Center, Palo Alto, CA 94304, USA.

出版信息

Adv Space Res. 1992;12(2-3):169-77. doi: 10.1016/0273-1177(92)90105-7.

Abstract

Reduction of physical activity due to disease or environmental restraints, such as total bed rest or exposure to spaceflight, leads to atrophy of skeletal muscle and is frequently accompanied by alterations in food intake and the concentration of metabolic regulatory hormones such as insulin. Hindlimb suspension of laboratory rats, as a model for microgravity, also shows marked atrophy of gravity dependent muscles along with a reduced gain in body weight. Suspended rats exhibit enhanced sensitivity to insulin-induced glucose uptake when compared with normal control rats and resistance to insulin action when compared with control rats matched similarly for reduced body weight gain. These changes are accompanied by decreased insulin binding and tyrosine kinase activity in soleus but not plantaris muscle, unchanged glucose uptake by perfused hindlimb and decreased sensitivity but not responsiveness to insulin-induced suppression of net proteolysis in hindlimb skeletal muscle. These findings suggest that loss of insulin sensitivity during muscle atrophy is associated with decreased insulin binding and tyrosine kinase activity in atrophied soleus muscle along with decreased sensitivity to the effects of insulin on suppressing net protein breakdown but not on enhancing glucose uptake by perfused hindlimb.

摘要

由于疾病或环境限制(如完全卧床休息或暴露于太空飞行环境)导致身体活动减少,会引起骨骼肌萎缩,并且常常伴随着食物摄入量的改变以及胰岛素等代谢调节激素浓度的变化。作为微重力模型,对实验大鼠进行后肢悬吊,也会导致依赖重力的肌肉明显萎缩,同时体重增加减少。与正常对照大鼠相比,悬吊大鼠对胰岛素诱导的葡萄糖摄取表现出更高的敏感性,而与体重增加减少程度相似的对照大鼠相比,则表现出对胰岛素作用的抵抗。这些变化伴随着比目鱼肌而非跖肌中胰岛素结合和酪氨酸激酶活性的降低、灌注后肢葡萄糖摄取不变以及后肢骨骼肌对胰岛素诱导的净蛋白水解抑制作用的敏感性降低但反应性不变。这些发现表明,肌肉萎缩期间胰岛素敏感性的丧失与萎缩比目鱼肌中胰岛素结合和酪氨酸激酶活性降低以及对胰岛素抑制净蛋白分解作用的敏感性降低有关,但与胰岛素增强灌注后肢葡萄糖摄取的作用无关。

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