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兔骨骼肌从快肌向慢肌转变过程中神经肌肉接头形态的改变。

Alterations in neuromuscular junction morphology during fast-to-slow transformation of rabbit skeletal muscles.

作者信息

Somasekhar T, Nordlander R H, Reiser P J

机构信息

Department of Oral Biology, Ohio State University, Columbus 43210, USA.

出版信息

J Neurocytol. 1996 May;25(5):315-31. doi: 10.1007/BF02284805.

Abstract

Chronic low frequency stimulation of motor nerves results in transformation of muscle fibre phenotype from fast- to slow-twitch. We examined the light and electron microscopic structure of neuromuscular junctions in normally fast twitch muscles, tibialis anterior and extensor digitorum longus of rabbit after 3 weeks of stimulation to determine whether synaptic structure is also modified during fibre type transformation. Neuromuscular junctions of stimulated and unstimulated (control) tibialis anterior and extensor digitorum longus muscles and unstimulated slow twitch soleus muscle were visualized with rhodamine-conjugated alpha-bungarotoxin. Video light microscopic images of neuromuscular junctions were digitized to allow quantification of their surface areas, perimeters, lengths and widths. Three weeks of stimulation resulted in a decrease in the maximal velocity of muscle fibre shortening and augmentation of mitochondrial volume in fast muscles, demonstrating the efficacy of the stimulation protocol employed in altering muscle fibre phenotype. Neuromuscular junctions of control tibialis anterior and extensor digitorum longus are thin, compact, and continuous, with complex branching patterns. In contrast, those of slow-twitch soleus are thicker and discontinuous. Neuromuscular junctions in control tibialis anterior and extensor digitorum longus are larger than those in soleus. Three weeks of stimulation causes a marked decrease in the size of neuromuscular junctions in tibialis anterior and extensor digitorum longus, as reflected in the significant reduction in neuromuscular junction surface area, length and width. Electron microscopy of these junctions suggests that secondary postsynaptic folds in stimulated muscles are more closely spaced. Also, axon terminals of stimulated muscles appear to contain more densely packed synaptic vesicles and mitochondria than controls. Decreases in neuromuscular junction dimensions can be partly explained by muscle fibre atrophy. However, the decrease in neuromuscular junction size is proportionately greater than that of muscle fibre diameter in both muscles, indicating that factors other than fibre atrophy may contribute to the reduced neuromuscular junction size in stimulated muscles. Neuromuscular junctions of stimulated tibialis anterior and extensor digitorum longus muscles exhibit some features characteristic of normal soleus neuromuscular junctions, indicating structural adaptations consistent with the altered muscle fibre phenotype. On the other hand, neuromuscular junctions of 3 week stimulated tibialis anterior and extensor digitorum longus and their synaptic branches remain as thin and continuous as those of unstimulated controls, suggesting that the transformation of neuromuscular junctions towards a morphology characteristic of slow muscle, is only partial. These results demonstrate that an altered pattern of impulse activity cause significant synaptic remodelling in adult rabbit skeletal muscles.

摘要

对运动神经进行慢性低频刺激会导致肌纤维表型从快肌纤维向慢肌纤维转变。我们检查了正常快肌纤维的肌肉(兔的胫骨前肌和趾长伸肌)在刺激3周后神经肌肉接头的光镜和电镜结构,以确定在纤维类型转变过程中突触结构是否也会发生改变。用罗丹明偶联的α-银环蛇毒素观察受刺激和未受刺激(对照)的胫骨前肌、趾长伸肌以及未受刺激的慢肌纤维比目鱼肌的神经肌肉接头。对神经肌肉接头的视频光镜图像进行数字化处理,以便对其表面积、周长、长度和宽度进行量化。3周的刺激导致快肌中肌纤维缩短的最大速度降低,线粒体体积增加,这证明了所采用的刺激方案在改变肌纤维表型方面的有效性。对照的胫骨前肌和趾长伸肌的神经肌肉接头薄、紧密且连续,具有复杂的分支模式。相比之下,慢肌比目鱼肌的神经肌肉接头更厚且不连续。对照的胫骨前肌和趾长伸肌的神经肌肉接头比目鱼肌的大。3周的刺激导致胫骨前肌和趾长伸肌的神经肌肉接头大小显著减小,这反映在神经肌肉接头表面积、长度和宽度的显著减少上。这些接头的电子显微镜检查表明,受刺激肌肉中的次级突触后褶皱间距更近。此外,受刺激肌肉的轴突终末似乎比对照含有更密集堆积的突触小泡和线粒体。神经肌肉接头尺寸的减小部分可由肌纤维萎缩来解释。然而,在这两块肌肉中,神经肌肉接头大小的减小比例大于肌纤维直径的减小比例,这表明除了纤维萎缩外,其他因素可能也导致了受刺激肌肉中神经肌肉接头尺寸的减小。受刺激的胫骨前肌和趾长伸肌的神经肌肉接头表现出一些正常比目鱼肌神经肌肉接头的特征,表明结构适应与改变的肌纤维表型一致。另一方面,刺激3周的胫骨前肌和趾长伸肌及其突触分支的神经肌肉接头仍与未受刺激的对照一样薄且连续,这表明神经肌肉接头向慢肌特征形态的转变只是部分的。这些结果表明,冲动活动模式的改变会导致成年兔骨骼肌中显著的突触重塑。

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