腺相关病毒
听力损失
生物
转导(生物物理学)
转基因
基因
遗传学
听觉脑干反应
遗传增强
医学
听力学
生物化学
载体(分子生物学)
重组DNA
作者
Charles Askew,Cylia Rochat,Bifeng Pan,Yukako Asai,Hena Ahmed,Erin Child,Bernard L. Schneider,Patrick Aebischer,Jeffrey R. Holt
出处
期刊:Science Translational Medicine
[American Association for the Advancement of Science (AAAS)]
日期:2015-07-08
卷期号:7 (295)
被引量:237
标识
DOI:10.1126/scitranslmed.aab1996
摘要
Genetic hearing loss accounts for up to 50% of prelingual deafness worldwide, yet there are no biologic treatments currently available. To investigate gene therapy as a potential biologic strategy for restoration of auditory function in patients with genetic hearing loss, we tested a gene augmentation approach in mouse models of genetic deafness. We focused on DFNB7/11 and DFNA36, which are autosomal recessive and dominant deafnesses, respectively, caused by mutations in transmembrane channel-like 1 (TMC1). Mice that carry targeted deletion of Tmc1 or a dominant Tmc1 point mutation, known as Beethoven, are good models for human DFNB7/11 and DFNA36. We screened several adeno-associated viral (AAV) serotypes and promoters and identified AAV2/1 and the chicken β-actin (Cba) promoter as an efficient combination for driving the expression of exogenous Tmc1 in inner hair cells in vivo. Exogenous Tmc1 or its closely related ortholog, Tmc2, were capable of restoring sensory transduction, auditory brainstem responses, and acoustic startle reflexes in otherwise deaf mice, suggesting that gene augmentation with Tmc1 or Tmc2 is well suited for further development as a strategy for restoration of auditory function in deaf patients who carry TMC1 mutations.
科研通智能强力驱动
Strongly Powered by AbleSci AI