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BDNF 基因治疗可诱导耳聋 Pou4f3 突变小鼠听神经存活和纤维发芽。

BDNF gene therapy induces auditory nerve survival and fiber sprouting in deaf Pou4f3 mutant mice.

机构信息

Kresge Hearing Research Institute, Department of Otolaryngology, The University of Michigan, Ann Arbor, MI 48109-5648, USA.

出版信息

Sci Rep. 2012;2:838. doi: 10.1038/srep00838. Epub 2012 Nov 12.

Abstract

Current therapy for patients with hereditary absence of cochlear hair cells, who have severe or profound deafness, is restricted to cochlear implantation, a procedure that requires survival of the auditory nerve. Mouse mutations that serve as models for genetic deafness can be utilized for developing and enhancing therapies for hereditary deafness. A mouse with Pou4f3 loss of function has no hair cells and a subsequent, progressive degeneration of auditory neurons. Here we tested the influence of neurotrophin gene therapy on auditory nerve survival and peripheral sprouting in Pou4f3 mouse ears. BDNF gene transfer enhanced preservation of auditory neurons compared to control ears, in which nearly all neurons degenerated. Surviving neurons in treated ears exhibited pronounced sprouting of nerve fibers into the auditory epithelium, despite the absence of hair cells. This enhanced nerve survival and regenerative sprouting may improve the outcome of cochlear implant therapy in patients with hereditary deafness.

摘要

对于遗传性耳蜗毛细胞缺失、患有重度或极重度耳聋的患者,目前的治疗方法仅限于耳蜗植入,该手术需要听神经存活。可作为遗传性耳聋模型的小鼠突变可用于开发和增强遗传性耳聋的治疗方法。Pou4f3 功能丧失的小鼠没有毛细胞,随后听觉神经元逐渐退化。在这里,我们测试了神经营养因子基因治疗对 Pou4f3 小鼠耳朵中的听神经存活和外周分支的影响。与对照组(其中几乎所有神经元都退化)相比,BDNF 基因转移增强了听觉神经元的保留。在治疗组中,尽管没有毛细胞,但存活的神经元明显将神经纤维向听觉上皮中延伸。这种增强的神经存活和再生性分支可能会改善遗传性耳聋患者的耳蜗植入治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/097c/3495341/6ad22715186c/srep00838-f1.jpg

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