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C57BL/6J小鼠去神经支配后趾长伸肌和比目鱼肌等长收缩特性的变化

Changes in isometric contractile properties of extensor digitorum longus and soleus muscles of C57BL/6J mice following denervation.

作者信息

Webster D M, Bressler B H

出版信息

Can J Physiol Pharmacol. 1985 Jun;63(6):681-6. doi: 10.1139/y85-113.

Abstract

In this study, conducted on mice of the C57BL/6J+/+ strain, we investigated the differential effects of denervation on the isometric contractile properties of the extensor digitorum longus (EDL) and soleus (SOL) muscles. The contractile properties were studied at 1, 28, 84, and 210 days following unilateral section of the sciatic nerve at 12 weeks of age. When isometric tetanus tension was expressed relative to wet weight, the denervated SOL showed an earlier and more pronounced loss in tension generating capacity than the EDL. Both the denervated SOL and EDL showed potentiation of the twitch tension at 28 days postdenervation. The time to peak twitch tension (TTP) and the time to half-relaxation (1/2RT) were prolonged by 28 days postdenervation in both muscles. This trend continued to the oldest age-groups studied in the EDL, but reached an apparent plateau in the SOL at 84 days postdenervation. In response to fatigue, the denervated SOL showed a marked decrease in resistance to fatigue at 1 day but a relatively normal response thereafter, whereas the denervated EDL showed an increase in resistance to fatigue at and beyond the 28-day period. In spite of the fact that the total contraction time of both muscles increased following denervation, the predominantly oxidative SOL remained a slower contracting muscle than the more glycolytic EDL.

摘要

在这项以C57BL/6J+/+品系小鼠为对象开展的研究中,我们探究了去神经支配对趾长伸肌(EDL)和比目鱼肌(SOL)等长收缩特性的不同影响。在12周龄时对坐骨神经进行单侧切断,于术后1天、28天、84天和210天研究收缩特性。当等长强直张力以湿重为参照表示时,去神经支配的SOL比EDL更早且更明显地丧失张力产生能力。去神经支配的SOL和EDL在去神经支配后28天均表现出抽搐张力增强。两条肌肉在去神经支配后28天,抽搐张力峰值时间(TTP)和半松弛时间(1/2RT)均延长。在EDL中,这种趋势持续到所研究的最大年龄组,但在去神经支配后84天,SOL中达到明显的平台期。在疲劳反应方面,去神经支配的SOL在1天时对疲劳的抵抗力显著下降,但此后反应相对正常,而去神经支配的EDL在28天及之后对疲劳的抵抗力增强。尽管去神经支配后两条肌肉的总收缩时间均增加,但以氧化代谢为主的SOL收缩速度仍比糖酵解能力更强的EDL慢。

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