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Conversion of Functional Synapses into Silent Synapses in the Trigeminal Brainstem after Neonatal Peripheral Nerve Transection

机译:新生儿周围神经横断后三叉神经干中功能性突触向沉默突触的转化

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摘要

One of the major consequences of neonatal infraorbital nerve damage is irreversible morphological reorganization in the principal sensory nucleus (PrV) of the trigeminal nerve in the brainstem. We used the voltage-clamp technique to study synaptic transmission in the normal and the denervated PrV of neonatal rats in an in vitro brainstem preparation. Most of the synapses in the PrV are already functional at birth. Three days after peripheral deafferentation, functional synapses become silent, lacking AMPA receptor-mediated currents. Without sensory inputs from the whiskers, silent synapses persist through the second postnatal week, indicating that the maintenance of AMPA receptor function depends on sensory inputs. High-frequency (50 Hz) electrical stimulation of the afferent pathway, which mimics sensory input, restores synaptic function, whereas low-frequency (1 Hz) stimulation has no effect. Application of glycine, which promotes AMPA receptor exocytosis, also restores synaptic function. Therefore, normal synaptic function in the developing PrV requires incoming activity via sensory afferents and/or enhanced AMPA receptor exocytosis. Sensory deprivation most likely results in AMPA receptor endocytosis and/or lateral diffusion to the extrasynaptic membrane.
机译:新生儿眶下神经损害的主要后果之一是脑干三叉神经的主要感觉核(PrV)发生不可逆的形态重组。我们在体外脑干制备中使用电压钳技术研究了新生大鼠的正常和失神经的PrV的突触传递。 PrV中的大多数突触在出生时就已经起作用。周围脱除心力不足三天后,功能性突触变得沉默,缺少AMPA受体介导的电流。没有晶须的感觉输入,沉默突触会持续到产后第二周,这表明AMPA受体功能的维持取决于感觉输入。模仿感觉输入的传入路径的高频(50 Hz)电刺激可恢复突触功能,而低频(1 Hz)刺激则无作用。甘氨酸的应用促进AMPA受体胞吐作用,还可以恢复突触功能。因此,在发育中的PrV中正常的突触功能需要通过感觉传入和/或增强的AMPA受体胞吐作用的进入活性。感觉剥夺很可能导致AMPA受体内吞和/或横向扩散到突触外膜。

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