Zhang Zhi-Jian, Guan Hong-Xia, Yang Kun, Xiao Bo-Kui, Liao Hua, Jiang Yang, Zhou Tao, Hua Qing-Quan
a Department of Otolaryngology - Head and Neck Surgery , Renmin Hospital of Wuhan University , Wuhan , China.
Acta Otolaryngol. 2017 Oct;137(10):1017-1023. doi: 10.1080/00016489.2017.1324217. Epub 2017 May 14.
This study aimed in fully investigating the toxicities of ouabain to mouse cochlea and the related cellular environment, and providing an optimal animal model system for cell transplantation in the treatment of auditory neuropathy (AN) and sensorineural hearing loss (SNHL).
Different dosages of ouabain were applied to mouse round window. The auditory brainstem responses and distortion product otoacoustic emissions were used to evaluate the cochlear function. The immunohistochemical staining and cochlea surface preparation were performed to detect the spiral ganglion neurons (SGNs), Schwann cells and hair cells.
Ouabain at the dosages of 0.5 mM, 1 mM and 3 mM selectively and permanently destroyed SGNs and their functions, while leaving the hair cells relatively intact. Ouabain at 3 mM resulted in the most severe SGNs loss and induced significant loss of Schwann cells started as early as 7 days and with further damages at 14 and 30 days after ouabain exposure.
The application of ouabain to mouse round window induces damages of SGNs and Schwann cells in a dose- and time-dependent manner, this study established a reliable and accurate animal model system of AN and SNHL.
本研究旨在全面探究哇巴因对小鼠耳蜗及其相关细胞环境的毒性,并为治疗听觉神经病(AN)和感音神经性听力损失(SNHL)的细胞移植提供一个最佳动物模型系统。
将不同剂量的哇巴因应用于小鼠圆窗。采用听性脑干反应和畸变产物耳声发射来评估耳蜗功能。进行免疫组织化学染色和耳蜗表面制备以检测螺旋神经节神经元(SGNs)、雪旺细胞和毛细胞。
0.5 mM、1 mM和3 mM剂量的哇巴因选择性且永久性地破坏了SGNs及其功能,而毛细胞相对完整。3 mM的哇巴因导致最严重的SGNs损失,并早在哇巴因暴露后7天就引起雪旺细胞的显著损失,在14天和30天时进一步受损。
将哇巴因应用于小鼠圆窗以剂量和时间依赖性方式诱导SGNs和雪旺细胞损伤,本研究建立了一个可靠且准确的AN和SNHL动物模型系统。