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首页> 外文期刊>Cellular and molecular life sciences: CMLS >Recovery of altered neuromuscular junction morphology and muscle function in mdx mice after injury
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Recovery of altered neuromuscular junction morphology and muscle function in mdx mice after injury

机译:损伤后mdx小鼠神经肌肉接头形态和肌肉功能改变的恢复

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摘要

Duchenne muscular dystrophy (DMD) is a devastating neuromuscular disease in which weakness, increased susceptibility to muscle injury, and inadequate repair underlie the pathology. While most attention has focused within the muscle fiber, we recently demonstrated significant alterations in the neuromuscular junction (NMJ) morphology and resulting neuromuscular transmission failure (NTF) 24 h after injury in mdx mice (murine model for DMD). Here we determine the contribution of NMJ morphology and NTF to the recovery of muscle contractile function post-injury. NMJ morphology and NTF rates were assessed day 0 (immediately after injury) and days 1, 7, 14 and 21 after quadriceps injury. Eccentric injury of the quadriceps resulted in a significant loss of maximal torque in both WT (39 +/- A 6 %) and mdx (76 +/- A 8 %) with a full recovery in WT by day 7 and in mdx by day 21. Post-injury alterations in NMJ morphology and NTF were found only in mdx, were limited to days 0 and 1, and were independent of changes in MuSK or AChR expression. Such early changes at the NMJ after injury are consistent with mechanical disruption rather than newly forming NMJs. Furthermore, we show that the dense microtubule network that underlies the NMJ is significantly reduced and disorganized in mdx compared to WT. These structural changes at the NMJ may play a role in the increased NMJ disruption and the exaggerated loss of nerve-evoked muscle force seen after injury to dystrophic muscles.
机译:Duchenne肌营养不良症(DMD)是一种毁灭性的神经肌肉疾病,其中无力,对肌肉损伤的敏感性增加以及修复不充分是病理的基础。虽然大多数注意力集中在肌肉纤维上,但我们最近证实了mdx小鼠(DMD的鼠模型)受伤后24小时,神经肌肉接头(NMJ)形态发生了显着变化,并导致了神经肌肉传递失败(NTF)。在这里,我们确定NMJ形态和NTF对损伤后肌肉收缩功能恢复的贡献。在股四头肌损伤后第0天(受伤后立即)和第1、7、14和21天评估NMJ形态和NTF率。股四头肌的偏心损伤导致WT(39 +/- A 6%)和mdx(76 +/- A 8%)的最大扭矩明显损失,第7天WT和mdx完全恢复21. NMJ形态和NTF的损伤后变化仅在mdx中发现,仅限于第0天和第1天,并且与MuSK或AChR表达的变化无关。损伤后NMJ的这种早期变化与机械破坏相一致,而不是与新形成的NMJ相一致。此外,我们显示,与WT相比,位于NMJ下方的致密微管网络显着减少且在mdx中杂乱无章。在营养不良性肌肉损伤后,NMJ处的这些结构变化可能在NMJ破坏增加和神经诱发的肌肉力量过度丧失中发挥了作用。

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