首页 | 本学科首页   官方微博 | 高级检索  
     


Estradiol Protects against Noise-Induced Hearing Loss and Modulates Auditory Physiology in Female Mice
Authors:Benjamin Shuster  Ryan Casserly  Erika Lipford  Rafal Olszewski  Batrice Milon  Shaun Viechweg  Kanisa Davidson  Jennifer Enoch  Mark McMurray  Mark A Rutherford  Kevin K Ohlemiller  Michael Hoa  Didier A Depireux  Jessica A Mong  Ronna Hertzano
Abstract:Recent studies have identified sex-differences in auditory physiology and in the susceptibility to noise-induced hearing loss (NIHL). We hypothesize that 17β-estradiol (E2), a known modulator of auditory physiology, may underpin sex-differences in the response to noise trauma. Here, we gonadectomized B6CBAF1/J mice and used a combination of electrophysiological and histological techniques to study the effects of estrogen replacement on peripheral auditory physiology in the absence of noise exposure and on protection from NIHL. Functional analysis of auditory physiology in gonadectomized female mice revealed that E2-treatment modulated the peripheral response to sound in the absence of changes to the endocochlear potential compared to vehicle-treatment. E2-replacement in gonadectomized female mice protected against hearing loss following permanent threshold shift (PTS)- and temporary threshold shift (TTS)-inducing noise exposures. Histological analysis of the cochlear tissue revealed that E2-replacement mitigated outer hair cell loss and cochlear synaptopathy following noise exposure compared to vehicle-treatment. Lastly, using fluorescent in situ hybridization, we demonstrate co-localization of estrogen receptor-2 with type-1C, high threshold spiral ganglion neurons, suggesting that the observed protection from cochlear synaptopathy may occur through E2-mediated preservation of these neurons. Taken together, these data indicate the estrogen signaling pathways may be harnessed for the prevention and treatment of NIHL.
Keywords:noise-induced hearing loss  mouse model  estrogen  sex-differences  cochlear synaptopathy  inner ear  auditory physiology
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号