Department of Otorhinolaryngology - Head and Neck Surgery, Hearing Research Centre Tübingen (THRC), University Tübingen, Germany.
Department of Otorhinolaryngology - Head and Neck Surgery, Hearing Research Centre Tübingen (THRC), University Tübingen, Germany.
Neuroscience. 2017 Aug 15;357:75-83. doi: 10.1016/j.neuroscience.2017.05.053. Epub 2017 Jun 14.
The performance of a cochlear implant depends on the defined interaction between afferent neurons of the spiral ganglion and the inserted electrode. Neurite outgrowth can be induced by neurotrophins such as brain-derived neurotrophic factor (BDNF) via tropomyosin kinase receptor B (TrkB). However, neurotrophin signaling through the p75 neurotrophin receptor (p75) inhibits neurite outgrowth in the presence of myelin. Organotypic cultures derived from postnatal (P3-5) mice were used to study myelin-induced inhibition in the cochlear spiral ganglion. Neurite outgrowth was analyzed and quantified utilizing an adapted Sholl analysis. Stimulation of neurite outgrowth was quantified after application of BDNF, the selective TrkB agonist 7,8-dihydroxyflavone (7,8-DHF) and a selective inhibitor of the Rho-associated kinase (Y27632), which inhibits the p75 pathway. Myelin-induced inhibition was assessed by application of myelin-associated glycoprotein (MAG-Fc) to stimulate the inhibitory p75 pathway. Inhibition of neurite outgrowth was achieved by the selective TrkB inhibitor K252a. Stimulation of neurite outgrowth was observed after treatment with BDNF, 7,8 DHF and a combination of BDNF and Y27632. The 7,8-DHF-induced growth effects could be inhibited by K252a. Furthermore, inhibition of neurite outgrowth was observed after supplementation with MAG-Fc. Myelin-induced inhibition could be overcome by 7,8-DHF and the combination of BDNF and Y27632. In this study, myelin-induced inhibition of neurite outgrowth was established in a spiral ganglion model. We reveal that 7,8-DHF is a viable novel compound for the stimulation of neurite outgrowth in a myelin-induced inhibitory environment. The combination of TrkB stimulation and ROCK inhibition can be used to overcome myelin inhibition.
人工耳蜗的性能取决于螺旋神经节的传入神经元和插入电极之间的定义相互作用。神经营养因子,如脑源性神经营养因子(BDNF),可以通过原肌球蛋白激酶受体 B(TrkB)诱导轴突生长。然而,在髓鞘存在的情况下,神经营养因子通过 p75 神经营养因子受体(p75)的信号传导会抑制轴突生长。本研究从出生后(P3-5)的小鼠中提取器官型培养物,以研究耳蜗螺旋神经节中的髓鞘诱导抑制。利用改良的 Sholl 分析来分析和量化轴突生长。在应用 BDNF、选择性 TrkB 激动剂 7,8-二羟基黄酮(7,8-DHF)和 Rho 相关激酶(Y27632)的选择性抑制剂后,对轴突生长的刺激进行了量化,该抑制剂抑制了 p75 途径。通过应用髓鞘相关糖蛋白(MAG-Fc)刺激抑制性 p75 途径来评估髓鞘诱导的抑制。用选择性 TrkB 抑制剂 K252a 抑制轴突生长。在应用 BDNF、7,8-DHF 和 BDNF 和 Y27632 的组合后,观察到刺激轴突生长。7,8-DHF 诱导的生长作用可以被 K252a 抑制。此外,在补充 MAG-Fc 后观察到轴突生长抑制。7,8-DHF 和 BDNF 和 Y27632 的组合可以克服髓鞘诱导的抑制。在这项研究中,在螺旋神经节模型中建立了髓鞘诱导的轴突生长抑制。我们揭示 7,8-DHF 是一种可行的新型化合物,可在髓鞘诱导的抑制环境中刺激轴突生长。TrkB 刺激和 ROCK 抑制的组合可用于克服髓鞘抑制。