Stöver T, Yagi M, Raphael Y
Kresge Hearing Research Institute, Department of Otolaryngology, The University of Michigan Medical School, Ann Arbor, MI, USA.
Gene Ther. 2000 Mar;7(5):377-83. doi: 10.1038/sj.gt.3301108.
Cochlear gene transfer is a promising new approach for inner ear therapy. Previous studies have demonstrated hair cell protection with cochlear gene transfer not only in the inoculated, but also in the uninoculated ear. To characterize the kinetics of viral spread, we investigated the extent of transgene expression in the contralateral (uninoculated) cochlea after unilateral adenoviral cochlear gene transfer. We used a lacZ reporter gene vector, and demonstrated spread of the adenovirus into the cerebrospinal fluid (CSF) after cochlear inoculation of 25 microl viral vector. Direct virus application into the CSF resulted in transduction of both cochleae, whereas virus inoculation into the bloodstream did not. The cochlear aqueduct was identified as the most likely route of virus spread to the contralateral cochlea. These data enhance our understanding of the kinetics of virus-mediated transgene expression in the inner ear, and assist in the development of clinical applications for inner ear gene therapy. Our results showed a functional communication between the CSF and the perilymphatic space of the inner ear, that is not only of importance for otological gene transfer, but also for CNS gene transfer. Gene Therapy (2000) 7, 377-383.
耳蜗基因转移是一种很有前景的内耳治疗新方法。先前的研究表明,耳蜗基因转移不仅能保护接种侧的毛细胞,还能保护未接种侧的毛细胞。为了描述病毒传播的动力学,我们研究了单侧腺病毒耳蜗基因转移后对侧(未接种)耳蜗中转基因表达的程度。我们使用了一个lacZ报告基因载体,发现在接种25微升病毒载体后,腺病毒扩散到了脑脊液(CSF)中。直接将病毒注入脑脊液会导致双侧耳蜗转导,而将病毒注入血流则不会。耳蜗导水管被确定为病毒扩散到对侧耳蜗最可能的途径。这些数据增进了我们对病毒介导的内耳转基因表达动力学的理解,并有助于内耳基因治疗临床应用的开发。我们的结果显示脑脊液与内耳外淋巴间隙之间存在功能联系,这不仅对内耳基因转移很重要,对中枢神经系统基因转移也很重要。《基因治疗》(2000年)7卷,377 - 383页