首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Histochemical alterations of re-innervated rat extensor digitorum longus muscle after end-to-end or graft repair: a comparative histomorphological study
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Histochemical alterations of re-innervated rat extensor digitorum longus muscle after end-to-end or graft repair: a comparative histomorphological study

机译:端到端或移植修复后再受神经支的大鼠指趾长肌的组织化学变化:对比组织形态学研究

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摘要

Changes in the histochemical profile of 43 rat extensor digitorum longus muscles undergoing de-innervation and re-innervation were recorded. Assessment of fibre type composition and muscle fibre cross-sectional area was performed at 15, 30, 90 and 180 days post operative (p.o.) after either primary end-to-end repair or autologous graft repair of the common peroneal nerve (n = 5 per time point and type of repair). The size and histochemical profile of single muscle fibres were analysed by computer-assisted quantification on the basis of their myofibrillar ATPase (pH 4.3) and succinate dehydrogenase (SDH) activities in serial, whole-muscle cross-sections. Accordingly, four muscle-fibre types could be functionally identified: (1) slow oxidative (SO, type I); (2) fast-oxidative glycolytic (FOG, type IIA); (3) fast glycolytic (FG, type IIB); and (4) succinate dehydrogenase intermediate (SDH-INT). At 15 days following end-to-end repair, the SDH-INT muscle fibre type was observed. By contrast, 15 days following graft repair, no changes in fibre type composition were observed (vs. control). At 30 days p.o. in the group that received end-to-end repair, type SDH-INT reached its maximum and was significantly higher than in the group that underwent graft repair. At 90 days p.o., the amount of SDH-INT fibres declined after end-to-end repair, but it was still significantly higher than in the group treated with a nerve graft. The increase of the SDH-INT fibre type was mirrored by a proportional disappearance of FG and FOG fibres. These changes were time-dependent, not reversible at 180 days p.o and largely blunted after nerve graft. Muscle-fibre size decreased at 15 and 30 days after both types of nerve repair. This decrease was transient and reversible within 90 days p.o. These findings reflect the fact that the reorganization of the histochemical profile in re-innervated muscles is both time dependent and long lasting. The degree of this reorganization is significantly higher after end-to-end repair than after graft repair.
机译:记录了去神经和再神经的43只大鼠伸指长肌的组织化学变化。在腓总神经的初次端到端修复或自体移植修复后(po)的术后15天,30天,90天和180天对纤维类型组成和肌纤维横截面积进行评估(n = 5每个时间点和维修类型)。在一系列连续的全肌肉横断面中,基于其肌原纤维ATPase(pH 4.3)和琥珀酸脱氢酶(SDH)活性,通过计算机辅助定量分析了单条肌纤维的大小和组织化学分布。因此,可以从功能上鉴定出四种肌肉纤维类型:(1)慢氧化性(SO,I型); (2)快速氧化糖酵解剂(FOG,IIA型); (3)快速糖酵解(FG,IIB型); (4)琥珀酸脱氢酶中间体(SDH-INT)。端到端修复后15天,观察到SDH-INT肌纤维类型。相比之下,移植物修复后15天,未观察到纤维类型组成的变化(与对照相比)。每周30天在接受端到端修复的组中,SDH-INT型达到了最大值,并且显着高于接受移植修复的组。到了90天后,端到端修复后SDH-INT纤维的数量减少了,但仍然明显高于神经移植组。 SDH-INT纤维类型的增加反映了FG和FOG纤维的比例消失。这些变化是时间依赖性的,在p.o的180天后不可逆,并且在神经移植后变钝。两种类型的神经修复后15天和30天肌纤维大小均减小。这种下降是短暂的,并且在90天之内是可逆的。这些发现反映了一个事实,即重新神经支配的肌肉中组织化学特征的重组既是时间依赖性的,也是持久的。端到端修复后的这种重组程度明显高于移植修复后的重组程度。

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