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冲动活动的时机塑造了神经肌肉接点处的突触竞争过程。

The timing of impulse activity shapes the process of synaptic competition at the neuromuscular junction.

机构信息

Department of Neurological and Visual Sciences, Section of Physiology, University of Verona, Strada Le Grazie 8, 37134 Verona, Italy.

出版信息

Neuroscience. 2010 May 5;167(2):343-53. doi: 10.1016/j.neuroscience.2010.01.055. Epub 2010 Feb 1.

Abstract

The development of neuromuscular junctions exhibits profound remodeling that brings from an immature state characterized by multiple motoneuronal inputs per muscle fiber, to a mature mononeuronal innervation. This striking elimination process occurs both perinatally and during adult reinnervation, and is also widely present in the developing CNS. The accelerating influence of the amount of impulse activity on this process, has been shown by various studies, but a more subtle role of the time correlation of action potential firing in the competing inputs, has also been suggested. Here we explore the latter influence using a rat adult model of neuromuscular junction formation, that is reinnervation following a motor nerve crush. This shares all important features with perinatal development, especially the strict juxtaposition of the competing inputs. In fact the regenerating axons converge on a single cluster of postsynaptic receptors, that is the original endplate of each muscle fiber. This focus on the spatial aspect of competition between nerve endings was missing in our previous experiments employing a similar paradigm. We impose a chronic synchronous firing to the competing terminals, by in vivo electrical stimulation of their axons distal to a sciatic nerve conduction block. Control preparations, with similar post-crush reinnervation, are left with their natural impulse activity unperturbed. We find that the experimental muscles display a prolonged duration of polyneuronal innervation with respect to controls, indicating that hebbian mechanisms participate in the synapse elimination process. Another aspect dealt with in our study is the genuine nature of the polyneuronal innervation occurring during adult muscle reinnervation, because it is supported by both confocal microscopy and by appropriate electrophysiological tests that exclude electrical coupling of myofibers by gap junctions.

摘要

神经肌肉接头的发育表现出深刻的重塑,从由多个运动神经元输入到每个肌肉纤维的未成熟状态,转变为成熟的单神经元支配。这个惊人的消除过程既发生在围产期,也发生在成年后的再支配过程中,也广泛存在于发育中的中枢神经系统中。许多研究表明,冲动活动的数量对这个过程有加速影响,但动作电位发射的时间相关性在竞争输入中的更微妙作用也被提出。在这里,我们使用成年大鼠神经肌肉接头形成模型(即运动神经损伤后的再支配)来探索后者的影响,该模型与围产期发育具有所有重要特征,特别是竞争输入的严格并置。事实上,再生轴突汇聚到单个突触后受体簇上,即每个肌肉纤维的原始终板。与我们之前使用类似范式的实验相比,这种对神经末梢之间竞争的空间方面的关注是缺失的。我们通过对坐骨神经传导阻滞远端的轴突进行体内电刺激,对竞争末端施加慢性同步放电。具有类似损伤后再支配的对照制剂保持其自然冲动活动不受干扰。我们发现,与对照相比,实验肌肉表现出多神经元支配的持续时间延长,表明赫布机制参与了突触消除过程。我们研究的另一个方面是成年肌肉再支配过程中发生的多神经元支配的真正性质,因为它得到共聚焦显微镜和适当的电生理测试的支持,这些测试排除了缝隙连接的肌纤维电耦合。

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