Gaal Botond, Jóhannesson Einar Örn, Dattani Amit, Magyar Agnes, Wéber Ildikó, Matesz Clara
Department of Anatomy, Histology and Embryology, Faculty of Medicine and Faculty of Dentistry, University of Debrecen, Nagyerdei krt. 98, Debrecen, Hungary.
Department of Pediatric Surgery, Faculty of Medicine, Clinical Center, University of Debrecen, Nagyerdei krt. 98, Debrecen, Hungary.
Neural Regen Res. 2015 Sep;10(9):1463-70. doi: 10.4103/1673-5374.165517.
We have previously found that unilateral labyrinthectomy is accompanied by modification of hyaluronan and chondroitin sulfate proteoglycan staining in the lateral vestibular nucleus of rats and the time course of subsequent reorganization of extracellular matrix assembly correlates to the restoration of impaired vestibular function. The tenascin-R has repelling effect on pathfinding during axonal growth/regrowth, and thus inhibits neural circuit repair. By using immunohistochemical method, we studied the modification of tenascin-R expression in the superior, medial, lateral, and descending vestibular nuclei of the rat following unilateral labyrinthectomy. On postoperative day 1, tenascin-R reaction in the perineuronal nets disappeared on the side of labyrinthectomy in the superior, lateral, medial, and rostral part of the descending vestibular nuclei. On survival day 3, the staining intensity of tenascin-R reaction in perineuronal nets recovered on the operated side of the medial vestibular nucleus, whereas it was restored by the time of postoperative day 7 in the superior, lateral and rostral part of the descending vestibular nuclei. The staining intensity of tenascin-R reaction remained unchanged in the caudal part of the descending vestibular nucleus bilaterally. Regional differences in the modification of tenascin-R expression presented here may be associated with different roles of individual vestibular nuclei in the compensatory processes. The decreased expression of the tenascin-R may suggest the extracellular facilitation of plastic modifications in the vestibular neural circuit after lesion of the labyrinthine receptors.
我们之前发现,单侧迷路切除术后,大鼠外侧前庭核中的透明质酸和硫酸软骨素蛋白聚糖染色会发生改变,随后细胞外基质组装的重组时间进程与受损前庭功能的恢复相关。腱生蛋白-R在轴突生长/再生过程中对路径寻找具有排斥作用,从而抑制神经回路修复。通过免疫组织化学方法,我们研究了单侧迷路切除术后大鼠上、内侧、外侧和下行前庭核中腱生蛋白-R表达的变化。术后第1天,上、外侧、内侧前庭核以及下行前庭核头端迷路切除侧的神经周网中腱生蛋白-R反应消失。存活第3天,内侧前庭核手术侧神经周网中腱生蛋白-R反应的染色强度恢复,而上、外侧前庭核以及下行前庭核头端在术后第7天时恢复。双侧下行前庭核尾端腱生蛋白-R反应的染色强度保持不变。此处呈现的腱生蛋白-R表达变化的区域差异可能与各个前庭核在代偿过程中的不同作用有关。腱生蛋白-R表达的降低可能表明迷路感受器损伤后前庭神经回路中细胞外对可塑性修饰的促进作用。