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脊髓内脏反射通路重组背后的发育性突触抑制

Developmental synaptic depression underlying reorganization of visceral reflex pathways in the spinal cord.

作者信息

Araki I, de Groat W C

机构信息

Department of Pharmacology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15261, USA.

出版信息

J Neurosci. 1997 Nov 1;17(21):8402-7. doi: 10.1523/JNEUROSCI.17-21-08402.1997.

Abstract

During development, neuronal connectivity has a remarkable plasticity. Synaptic refinement in the spinal autonomic nucleus might be involved in the elimination of primitive segmental reflexes and the emergence of mature spinobulbospinal reflexes, which occurs a few weeks after birth. To address this possibility, we examined the postnatal changes of segmental excitatory synaptic transmission by applying the whole-cell recording technique to parasympathetic preganglionic neurons in slice preparations of the rat lumbosacral spinal cord. The mean magnitude of unitary excitatory synaptic currents evoked in preganglionic neurons by stimulation of single interneurons remained unchanged during the first two postnatal weeks but was reduced by 50% during the third postnatal week. This reduction in synaptic efficacy was associated with a decrease in the amount of transmitter release from interneurons. Moreover, this developmental depression of segmental synaptic transmission was prevented by spinal cord transection at the thoracic level on postnatal day 14. Thus, developmental modification of excitatory synapses on preganglionic neurons appears to be attributable to competition between segmental interneuronal and descending bulbospinal inputs, which results in the developmental reorganization of parasympathetic excretory reflex pathways.

摘要

在发育过程中,神经元连接具有显著的可塑性。脊髓自主神经核中的突触精细化可能参与原始节段性反射的消除以及成熟脊髓-延髓-脊髓反射的出现,这种情况发生在出生后几周。为了探究这种可能性,我们采用全细胞记录技术,对大鼠腰骶脊髓切片制备中的副交感神经节前神经元进行研究,以检测节段性兴奋性突触传递的产后变化。在出生后的前两周,刺激单个中间神经元诱发的节前神经元单位兴奋性突触电流的平均幅度保持不变,但在出生后第三周降低了50%。这种突触效能的降低与中间神经元递质释放量的减少有关。此外,在出生后第14天进行胸段脊髓横断可防止节段性突触传递的这种发育性抑制。因此,节前神经元上兴奋性突触的发育性修饰似乎归因于节段性中间神经元和下行延髓-脊髓输入之间的竞争,这导致了副交感神经排泄反射通路的发育性重组。

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