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大鼠正常及长期去神经支配比目鱼肌的机械敏感性

Mechano-sensitivity of normal and long term denervated soleus muscle of the rat.

作者信息

Squecco Roberta, Kern Helmut, Biral Donatella, Rossini Katia, Francini Fabio

机构信息

Department of Physiological Sciences, University of Florence, Viale GB Morgagni 63, Firenze I-50134, Italy.

出版信息

Neurol Res. 2008 Mar;30(2):155-9. doi: 10.1179/174313208X281028.

Abstract

INTRODUCTION AND OBJECTIVES

Evidence showed that physical forces, as passive stretching or active contraction, may counteract various kinds of skeletal muscle atrophy due, for instance, to muscle immobilization, pathophysiology or denervation. Accordingly, active muscle contraction induced by functional electric stimulation is helpful to reduce the muscle atrophic state in denervated man. Moreover, there is evidence that also passive mechanical stimulation of the sarcolemnic membrane may reduce the atrophic muscle state. As to the mechanisms by which mechanical stimulation modulates muscle physiology and pathophysiology, there is a growing list of facts that signaling pathway to the nucleus involves stretch activated channels (SACs) of the sarcolemma and the cytoskeleton. SACs activation allowed a Ca(2+) inflow that activates Ca(2+)-dependent molecular signals. Cytoskeleton may be activated by Ca(2+)-dependent and -independent paths and its contraction and elongation represent not only a mechanical signal to the nucleus but also a stimulus for many molecular signals. The aim of this work was to evaluate in soleus muscle of the rat, the mechano-sensitivity of SACs before and after medium and long term denervation.

METHODS

Electrophysiologic experiments were made in normal and denervated Soleus muscle of Wistar rats. Currents were recorded in voltage clamp by intracellular microelectrodes inserted in a single fiber.

RESULTS

Our findings demonstrated that SACs were expressed in normal soleus muscle and that SAC currents were potentiated by muscle stretching. Another important result was that the sensitivity to stretching increased after denervation and was particularly evident in long term denervated muscles.

DISCUSSION

The reported effects are in agreement with the effects of exercise on inducing muscle hypertrophy or with the positive effects on repairing the atrophic state of skeletal muscles by mechanical stimulation or, in denervated humans, by the functional electrical stimulation (FES).

摘要

引言与目的

有证据表明,诸如被动拉伸或主动收缩等物理力可对抗各种类型的骨骼肌萎缩,例如因肌肉固定、病理生理学或去神经支配所致的萎缩。因此,功能性电刺激诱导的主动肌肉收缩有助于减轻去神经支配患者的肌肉萎缩状态。此外,有证据表明,对肌膜的被动机械刺激也可减轻肌肉萎缩状态。至于机械刺激调节肌肉生理和病理生理的机制,越来越多的事实表明,通向细胞核的信号通路涉及肌膜和细胞骨架的牵张激活通道(SACs)。SACs的激活使Ca(2+)流入,从而激活依赖Ca(2+)的分子信号。细胞骨架可通过依赖Ca(2+)和不依赖Ca(2+)的途径被激活,其收缩和伸长不仅代表向细胞核的机械信号,也是许多分子信号的刺激因素。本研究的目的是评估大鼠比目鱼肌在中长期去神经支配前后SACs的机械敏感性。

方法

在Wistar大鼠的正常和去神经支配的比目鱼肌上进行电生理实验。通过插入单根肌纤维的细胞内微电极在电压钳下记录电流。

结果

我们的研究结果表明,SACs在正常比目鱼肌中表达,且SAC电流可因肌肉拉伸而增强。另一个重要结果是,去神经支配后对拉伸的敏感性增加,在长期去神经支配的肌肉中尤为明显。

讨论

所报道的这些效应与运动诱导肌肉肥大的效应一致,或与机械刺激对修复骨骼肌萎缩状态的积极作用一致,或与在去神经支配的人体中功能性电刺激(FES)的积极作用一致。

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