Liu Yu-He, Ke Xiao-Mei, Qin Yong, Gu Zhi-Ping, Xiao Shui-Fang
Department of Otolaryngology, Head and Neck Surgery, Peking University First Hospital, Beijing 100034, China.
Chin Med J (Engl). 2007 Jul 20;120(14):1236-40.
Recent studies showed that aminoglycosides destroyed the cochlear cells and induced ototoxicity by producing reactive oxygen species, including free radicals in the mitochondria, damaging the membrane of mitochondria and resulting in apoptotic cell death. Bcl-x(L) is a well characterized anti-apoptotic member of the Bcl-2 family. The aim of this study was to determine the potential cochlear protective effect of Bcl-x(L) as a therapeutic agent in the murine model of aminoglycoside ototoxicity.
Serotype 2 of adeno-associated virus (AAV2) as a vector encoding the mouse Bcl-x(L) gene was injected into mice cochleae prior to injection of kanamycin. Bcl-x(L) expression in vitro and in vivo was examined with Western blotting and immunohistochemistry separately. Cochlear dissection and auditory steady state responses were checked to evaluate the cochlear structure and function.
The animals in the AAV2-Bcl-x(L)/kanamycin group displayed better auditory steady state responses hearing thresholds and cochlear structure than those in the artificial perilymph/kanamycin or AAV2-enhanced humanized green fluorescent protein/kanamycin control group at all tested frequencies. The auditory steady state responses hearing thresholds and cochlear structure in the inoculated side were better than that in the contralateral side.
AAV2-Bcl-x(L) afforded significant preservation of the cochlear hair cells against ototoxic insults and protected the cochlear function. AAV2-mediated Bcl-x(L) might be an approach with respect to potential therapeutic application in the cochlear degeneration.
最近的研究表明,氨基糖苷类药物通过产生活性氧,包括线粒体中的自由基,破坏耳蜗细胞并诱导耳毒性,损伤线粒体膜并导致细胞凋亡性死亡。Bcl-x(L)是Bcl-2家族中一个特征明确的抗凋亡成员。本研究的目的是确定Bcl-x(L)作为一种治疗药物在氨基糖苷类耳毒性小鼠模型中的潜在耳蜗保护作用。
在注射卡那霉素之前,将作为编码小鼠Bcl-x(L)基因载体的2型腺相关病毒(AAV2)注入小鼠耳蜗。分别用蛋白质免疫印迹法和免疫组织化学法检测体外和体内的Bcl-x(L)表达。检查耳蜗解剖结构和听觉稳态反应以评估耳蜗结构和功能。
在所有测试频率下,AAV2-Bcl-x(L)/卡那霉素组动物的听觉稳态反应听力阈值和耳蜗结构均优于人工外淋巴/卡那霉素或AAV2增强型人源化绿色荧光蛋白/卡那霉素对照组。接种侧的听觉稳态反应听力阈值和耳蜗结构优于对侧。
AAV2-Bcl-x(L)能显著保护耳蜗毛细胞免受耳毒性损伤并保护耳蜗功能。AAV2介导的Bcl-x(L)可能是一种在耳蜗退变中具有潜在治疗应用价值的方法。