Shah S B, Gladstone H B, Williams H, Hradek G T, Schindler R A
Department of Otolaryngology--Head and Neck Surgery, Epstein Hearing Research Laboratory, University of California, San Francisco, USA.
Am J Otol. 1995 May;16(3):310-4.
Intracochlear survival of auditory neurons is thought to be a factor contributing to the success of cochlear implantations. Damage to the cochlear end-organ is frequently associated with loss of neurites in the osseous spiral lamina. The authors have previously reported a model for long-term intracochlear administration of pharmacologic agents using a technique and device analogous to a cochlear implant. These studies suggest that nerve growth factor (NGF) protects the auditory nerve from the immediate neurotoxic effects of neomycin. The intent of the present investigation is to determine whether NGF can protect auditory neural elements from neomycin-induced degeneration after several weeks have elapsed between the neomycin perfusion and the administration of NGF. Neomycin was infused over 24 hours through an indwelling, intracochlear cannula attached to a mini osmotic pump to unilaterally destroy the cochlear end-organ. The pump perfused the cochlea with artificial perilymph for 2 weeks. Then, the pump reservoirs were surgically replaced; the new reservoirs delivered either NGF or artificial perilymph for an additional 2 weeks. Spiral ganglion cell densities were measured along Rosenthal's canal in the basal, middle, and apical cochlear turns. This investigation revealed that NGF prevented auditory nerve degeneration over the 2-week period, when compared to controls, and that the protective effect was greatest in the neural elements closest to the source of NGF.
听觉神经元在耳蜗内的存活被认为是影响人工耳蜗植入成功与否的一个因素。耳蜗终器的损伤常常与骨螺旋板中神经突的丧失相关。作者先前报道了一种使用类似于人工耳蜗的技术和装置进行耳蜗内长期给药的模型。这些研究表明,神经生长因子(NGF)可保护听神经免受新霉素的即时神经毒性作用。本研究的目的是确定在新霉素灌注和给予NGF之间经过数周后,NGF是否能保护听觉神经元件免受新霉素诱导的退变。通过连接到微型渗透泵的留置耳蜗内插管在24小时内注入新霉素,以单侧破坏耳蜗终器。泵用人工外淋巴灌注耳蜗2周。然后,通过手术更换泵储液器;新的储液器再给予NGF或人工外淋巴2周。沿着耳蜗底部、中部和顶部转弯处的罗森塔尔管测量螺旋神经节细胞密度。该研究表明,与对照组相比,NGF在2周内可防止听神经退变,并且在最接近NGF来源的神经元件中保护作用最大。