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外周神经损伤并不改变发育中三叉神经传入纤维的释放特性。

Peripheral nerve damage does not alter release properties of developing central trigeminal afferents.

机构信息

Department of Anatomy and Neurobiology, University of Maryland School of Medicine, Baltimore, Maryland, USA.

出版信息

J Neurophysiol. 2011 Apr;105(4):1681-8. doi: 10.1152/jn.00833.2010. Epub 2011 Feb 9.

DOI:10.1152/jn.00833.2010
PMID:21307331
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3075289/
Abstract

The infraorbital branch of the trigeminal nerve (ION) is essential in whisker-specific neural patterning ("barrelettes") in the principal nucleus of the trigeminal nerve (PrV). The barrelettes are formed by the ION terminal arbors, somata, and dendrites of the PrV cells; they are abolished after neonatal damage to the ION. Physiological studies show that disruption of the barrelettes is accompanied by conversion of functional synapses into silent synapses in the PrV. In this study, we used whole cell recordings with a paired-pulse stimulation protocol and MK-801 blocking rate to estimate the presynaptic release probability (Pr) of ION central trigeminal afferent terminals in the PrV. We investigated Pr during postnatal development, following neonatal ION damage, and determined whether conversion of functional synapses into silent synapses after peripheral denervation results from changes in Pr. The paired-pulse ratio (PPR) was quite variable ranging from 40% (paired-pulse depression) to 175% (paired-pulse facilitation). The results from paired-pulse protocol were confirmed by MK-801 blocking rate experiments. The nonuniform PPRs did not show target cell specificity and developmental regulation. The distribution of PPRs fit nicely to Gaussian function with a peak at ∼ 100%. In addition, neonatal ION transections did not alter the distribution pattern of PPR in their central terminals, suggesting that the conversion from functional synapses into silent synapses in the peripherally denervated PrV is not caused by changes in the Pr.

摘要

三叉神经的眶下分支(ION)对于三叉神经主核(PrV)中的胡须特异性神经模式(“barrelettes”)至关重要。 barrelettes 是由 ION 末梢树突、神经元体和 PrV 细胞的树突形成的;它们在 ION 新生儿损伤后消失。生理研究表明,barrelettes 的破坏伴随着 PrV 中功能性突触向沉默突触的转化。在这项研究中,我们使用带有成对脉冲刺激方案和 MK-801 阻断率的全细胞记录来估计 PrV 中 ION 中央三叉神经传入末端的突触前释放概率(Pr)。我们研究了出生后发育过程中的 Pr,以及在新生儿 ION 损伤后,以及外周去神经后功能性突触向沉默突触的转化是否是由于 Pr 的变化引起的。成对脉冲比(PPR)变化很大,范围从 40%(成对脉冲抑制)到 175%(成对脉冲易化)。成对脉冲方案的结果通过 MK-801 阻断率实验得到了证实。非均匀的 PPR 不显示靶细胞特异性和发育调节。PPR 的分布与高斯函数很好地吻合,峰值在约 100%。此外,新生儿 ION 横断术并没有改变其中央末梢中 PPR 的分布模式,这表明在外周去神经的 PrV 中,功能性突触向沉默突触的转化不是由于 Pr 的变化引起的。

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