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Reduced glycogen phosphorylase activity in denervated hindlimb muscles of rat is related to muscle atrophy and fibre type.

机译:大鼠神经支配的后肢肌肉糖原磷酸化酶活性降低与肌肉萎缩和纤维类型有关。

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Changes in the activity of muscle glycogen synthase or phosphorylase (GP) may be responsible for the deregulation of glycogen synthesis and storage which occurs in diabetes mellitus. To clarify the relationship between muscle atrophy, fibre type, insulin-stimulated glucose uptake and GP activity during insulin resistance, we used sciatic nerve severance to induce insulin resistance in rat hindlimb muscles and compared the above parameters in muscles with a range of fibre types. Changes were analysed by comparison with the contralateral hindlimb, which bears more weight due to denervation of the opposing limb, as well as the sham-operated and contralateral limb of a separate rat. Denervation caused a decrease in insulin-stimulated glucose uptake by 1 day after denervation and a decline of GP activity after 7 days in all muscles investigated. GP activity decreased by 73% in soleus, 36% in red gastrocnemius, 35% in tibialis and 13% in white gastrocnemius, which was related to the degree of muscle atrophy and inversely related to the overall GP activity in non-denervated muscles. GP activity in muscles of the contralateral limb from the denervated rat did not differ from either hindlimb of the sham-operated rat. We conclude that the fibre-type related reduction in insulin-stimulated glucose uptake of denervated muscle determines the change in its metabolism and it is this metabolic change which determines the mechanism, rate and degree of muscle atrophy, which is directly related to the decline in GP activity.
机译:肌肉糖原合酶或磷酸化酶(GP)活性的变化可能是导致糖尿病中糖原合成和储存失调的原因。为了阐明在胰岛素抵抗期间肌肉萎缩,纤维类型,胰岛素刺激的葡萄糖摄取与GP活性之间的关系,我们使用坐骨神经切断来诱导大鼠后肢肌肉的胰岛素抵抗,并将上述参数与多种纤维类型的肌肉进行比较。通过与对侧后肢进行比较分析变化,该对侧后肢由于对侧肢体的神经支配以及另一只大鼠的假手术和对侧肢体的神经支配而承受更大的重量。去神经引起神经刺激后1天胰岛素刺激的葡萄糖摄取减少,而7天后所有研究肌肉的GP活性下降。比目鱼的GP活性降低了73%,红色腓肠肌减少了36%,胫腓肌减少了35%,白色腓肠肌减少了13%,这与肌肉萎缩程度有关,而与无神经支配的肌肉的总GP活性成反比。去神经大鼠的对侧肢体肌肉中的GP活性与假手术大鼠的后肢相同。我们得出的结论是,与肌肉类型相关的失神经肌肉的胰岛素刺激的葡萄糖摄取减少决定了其代谢的变化,而正是这种代谢变化决定了肌肉萎缩的机制,发生率和程度,这直接与肌肉萎缩的下降有关。 GP活动。

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