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RNA Interference Prevents Autosomal-Dominant Hearing Loss
Journal article   Open access   Peer reviewed

RNA Interference Prevents Autosomal-Dominant Hearing Loss

Seiji B. Shibata, Paul T. Ranum, Hideaki Moteki, Bifeng Pan, Alexander Goodwin, Shawn Goodman, Paul J. Abbas, Jeffrey R. Holt and Richard J.H. Smith
American journal of human genetics, Vol.98(6), pp.1101-1113
0
06/02/2016
DOI: 10.1016/j.ajhg.2016.03.028
PMCID: PMC4908151
PMID: 27236922
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Published (Version of record)CC BY-NC-ND V4.0 Open Access
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https://doi.org/10.1016/j.ajhg.2016.03.028View
Published (Version of record)Am J Hum Genet. 2016 Jun 2;98(6):1101-13. Epub 2016 May 26.

Abstract

Hearing impairment is the most common sensory deficit. It is frequently caused by the expression of an allele carrying a single dominant missense mutation. Herein, we show that a single intracochlear injection of an artificial microRNA carried in a viral vector can slow progression of hearing loss for up to 35 weeks in the Beethoven mouse, a murine model of non-syndromic human deafness caused by a dominant gain-of-function mutation in Tmc1 (transmembrane channel-like 1). This outcome is noteworthy because it demonstrates the feasibility of RNA-interference-mediated suppression of an endogenous deafness-causing allele to slow progression of hearing loss. Given that most autosomal-dominant non-syndromic hearing loss in humans is caused by this mechanism of action, microRNA-based therapeutics might be broadly applicable as a therapy for this type of deafness.

Otolaryngology hearing impairment OAfund

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