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[四周尾部悬吊大鼠比目鱼肌强直张力降低及其潜在机制分析]

[Decrease in tetanic tension in 4-week tail-suspended rat soleus and analysis of its underlying mechanisms].

作者信息

Gao Fang, Yu Zhi-bin, Cheng Jiu-hua, Feng Han-zhong, Zhang Li-fan

出版信息

Space Med Med Eng (Beijing). 2002 Aug;15(4):255-9.

Abstract

Objective. To observe the dynamic changes in tetanic tension in 4-week tail-suspended rat soleus (SOL) and extensor digitorum longus muscle (EDL) and to elucidate its underlying mechanisms. Method. After 4 weeks of tail suspension SOL and EDL of the rats were isolated and perfused. Their isometric twitch and tetanic tensions were recorded. Result. Atrophy occurred in the SOL, but not in the EDL. The maximum twitch tension (Pt) decreased significantly and was more dependent on stimulation voltage in SOL of tail-suspended rat. Time to maximum twitch tension (TPT) and time from maximum twitch tension to half relaxation (TR50) were reduced in the SOL. Pt also decreased in the EDL, but TPT and TR50 did not change in the EDL. The maximum tetanic tension reduced in SOL and EDL of tail-suspended rats. The decline rate of tetanic tension in SOL was faster than the control. The profile of tetanic contraction curve in atrophic SOL approached that in EDL. Conclusion. The above results suggested that the underlying mechanisms of reduced maximum twitch and tetanic tension in 4-week tail-suspended rat SOL may involve the reduction in number of cross-bridge per cross-section area or force produced per cross-bridge. The rapid decline rate in atrophic SOL may be related to the shift in myosin heavy chain and troponin I isoforms or to decrease in excitability.

摘要

目的。观察4周尾悬吊大鼠比目鱼肌(SOL)和趾长伸肌(EDL)强直张力的动态变化,并阐明其潜在机制。方法。对大鼠进行4周尾悬吊后,分离并灌注其SOL和EDL。记录它们的等长收缩抽搐和强直张力。结果。SOL发生萎缩,而EDL未发生萎缩。尾悬吊大鼠的SOL中最大抽搐张力(Pt)显著降低,且更依赖于刺激电压。SOL的最大抽搐张力时间(TPT)以及从最大抽搐张力到半松弛的时间(TR50)缩短。EDL中的Pt也降低,但EDL中的TPT和TR50未改变。尾悬吊大鼠的SOL和EDL中最大强直张力均降低。SOL中强直张力的下降速率比对照组更快。萎缩的SOL中强直收缩曲线的形态接近EDL中的。结论。上述结果表明,4周尾悬吊大鼠SOL中最大抽搐和强直张力降低的潜在机制可能涉及每横截面积横桥数量的减少或每个横桥产生的力的减少。萎缩的SOL中快速下降速率可能与肌球蛋白重链和肌钙蛋白I同工型的转变或兴奋性降低有关。

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