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耳蜗神经支配中的 Ephrins 与 Ephs 及其对提升人工耳蜗功能的意义

Ephrins and Ephs in cochlear innervation and implications for advancing cochlear implant function.

作者信息

Lee Kenneth H, Warchol Mark E, Pawlowski Karen S, Shao Dongmei, Koulich Elena, Zhou Constance Q, Lee James, Henkemeyer Mark J

机构信息

Department of Otolaryngology-Head & Neck Surgery, University of Texas Southwestern Medical Center, Dallas, Texas; Department of Developmental Biology, University of Texas Southwestern Medical Center, Dallas, Texas; Division of Pediatric Otolaryngology, Children's Medical Center, Dallas, Texas.

出版信息

Laryngoscope. 2015 May;125(5):1189-97. doi: 10.1002/lary.25066. Epub 2014 Dec 23.

Abstract

OBJECTIVES/HYPOTHESIS: Determine if the neuronal pathfinding cues resulting from Eph/ephrin interaction in the inner ear play a role in establishing the tonotopic innervation of the cochlea.

STUDY DESIGN

Protein expression of Ephs and ephrins was evaluated in the inner ear of mice and chicks. Subsequently, in vitro, in vivo, and functional electrophysiologic studies were performed to indicate that Ephs and ephrins play a role regulating the normal innervation patterns in the mouse inner ear.

METHODS

Eph and ephrin protein expression was identified in the inner ear by western blotting and localized by fluorescence immunohistochemistry and X-gal staining. Eph/ephrin effects on neurite outgrowth was assessed via co-culture with EphB2 expressing COS-1 cells. Anatomic effects of disrupting Eph/ephrin signaling on cochlear innervation were determined with lipophilic dye tracing and functional effects with auditory brainstem response (ABR).

RESULTS

Expression of several different Ephs and ephrins were found in the inner ear of chicks and mice. The changes in ephrin-A2 immunoreactivity after gentamicin ototoxicity coincide with the spatio-temporal pattern of hair cell loss and regeneration in the chick cochlea. EphB2 inhibited outgrowth of spiral ganglion cell neurites. Knockout mice with null function of EphB1, EphB2, and EphB3 demonstrated abnormal inner ear innervation and elevated ABR thresholds, indicating hearing loss.

CONCLUSIONS

Ephrin-A2 may be involved in the guidance of ganglion cells to hair cells in the chick. Disruption of Eph/ephrin signaling results in abnormal innervation and hearing loss, suggesting that these proteins play a role in establishing normal innervation patterns in the mouse cochlea.

LEVEL OF EVIDENCE

NA

摘要

目的/假设:确定内耳中Eph/ephrin相互作用产生的神经元寻路线索是否在建立耳蜗的音频拓扑神经支配中发挥作用。

研究设计

评估Ephs和ephrins在小鼠和雏鸡内耳中的蛋白表达。随后,进行体外、体内和功能性电生理研究,以表明Ephs和ephrins在调节小鼠内耳正常神经支配模式中发挥作用。

方法

通过蛋白质印迹法鉴定内耳中的Eph和ephrin蛋白表达,并通过荧光免疫组织化学和X-gal染色进行定位。通过与表达EphB2的COS-1细胞共培养来评估Eph/ephrin对神经突生长的影响。用亲脂性染料追踪法确定破坏Eph/ephrin信号传导对耳蜗神经支配的解剖学影响,并用听觉脑干反应(ABR)确定功能影响。

结果

在雏鸡和小鼠的内耳中发现了几种不同的Ephs和ephrins的表达。庆大霉素耳毒性后ephrin-A2免疫反应性的变化与雏鸡耳蜗中毛细胞丢失和再生的时空模式一致。EphB2抑制螺旋神经节细胞神经突的生长。EphB1、EphB2和EphB3功能缺失的基因敲除小鼠表现出内耳神经支配异常和ABR阈值升高,表明听力损失。

结论

ephrin-A2可能参与雏鸡中神经节细胞向毛细胞的导向。Eph/ephrin信号传导的破坏导致神经支配异常和听力损失,表明这些蛋白质在建立小鼠耳蜗的正常神经支配模式中发挥作用。

证据水平

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