首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Effect of unilateral labyrinthectomy on the molecular composition of perineuronal nets in the lateral vestibular nucleus of the rat
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Effect of unilateral labyrinthectomy on the molecular composition of perineuronal nets in the lateral vestibular nucleus of the rat

机译:单侧迷路切除术对大鼠前庭外侧核神经周围神经网分子组成的影响

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Disturbances in vestibular functions caused by unilateral labyrinthectomy (UL) are spontaneously restored during the process of vestibular compensation due to the plasticity of CNS. The underlying molecular background of vestibular compensation is not yet fully understood. Recent studies have shown that the extracellular matrix (ECM) molecules have either permissive or non-permissive effect on the neural plasticity. In our previous study we have demonstrated changes in the expression of hyaluronan (HA) in the vestibular nuclei (VN) of the frog following peripheral vestibular lesion. The present work was undertaken to examine the expression of the HA and chondroitin sulfate proteoglycans (CSPGs) in the lateral vestibular nucleus (LVN) of the rat following UL by using histochemical methods. On the first postoperative day, the condensation of the ECM around the neurons, the perineuronal net (PNN) was not distinguished from the surrounding neuropil on the side of UL indicating the desorganization of its molecular structure. At survival day 3, the PNN was recognizable with the HA probe, whereas its staining for the CSPGs was restored by the time of the seventh postoperative day. In the neuropil, the intensity of the HA increased on the operated side, while the CSPGs reaction almost completely disappeared. The present study have demonstrated for the first time that the UL is accompanied by the modification of the HA, and CSPG staining pattern in the PNN of the LVN in the rat. As the reorganization of the PNN corresponds to the restoration of spontaneous activity of vestibular neurons, our study implies the role of HA and CSPGs in the vestibular compensation.
机译:由于中枢神经系统的可塑性,单侧迷路切除术(UL)引起的前庭功能障碍会在前庭补偿过程中自发恢复。前庭补偿的潜在分子背景尚未完全了解。最近的研究表明,细胞外基质(ECM)分子对神经可塑性具有允许或不允许的作用。在我们之前的研究中,我们证明了周围前庭病变后,青蛙前庭核(VN)中透明质酸(HA)的表达发生了变化。通过使用组织化学方法,进行本工作以检查UL后UL大鼠的前庭外侧核(LVN)中的HA和硫酸软骨素蛋白聚糖(CSPG)的表达。术后第一天,ECM周围神经元,神经周围神经网络(PNN)的凝结未与UL侧周围的神经纤维区分开,表明其分子结构混乱。在存活的第3天,HA探针可识别PNN,而在术后第7天恢复了CSPG的染色。在神经纤维中,HA的强度在手术侧增加,而CSPGs反应几乎完全消失。本研究首次证明,UL伴随着HA的修饰以及大鼠LVN的PNN中的CSPG染色模式。由于PNN的重组对应于前庭神经元自发活动的恢复,因此我们的研究暗示了HA和CSPG在前庭补偿中的作用。

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