Rescue of Hearing by Gene Delivery to Inner-Ear Hair Cells Using Exosome-Associated AAV

Восстановление слуха путем доставки генов во внутреннеушные волосковые клетки с использованием AAV, ассоциированного с экзосомами
Bence György, Cyrille Sage, Artur A. Indzhykulian, Déborah Scheffer, Alain Brisson, Sisareuth Tan, Xudong Wu, Adrienn Volak, Dakai Mu, Panos I. Tamvakologos, Yaqiao Li, Zachary Fitzpatrick, Maria Ericsson, Xandra O. Breakefield, David P. Corey, Casey A. Maguire
2017-01-10

Lhfpl5/Tmhs mouse modelcochlear gene deliveryexosome-associated AAVhereditary deafnessinner ear hair cells
Adeno-associated virus (AAV) is a safe and effective vector for gene therapy for retinal disorders. Gene therapy for hearing disorders is not as advanced, in part because gene delivery to sensory hair cells of the inner ear is inefficient. Although AAV transduces the inner hair cells of the mouse cochlea, outer hair cells remain refractory to transduction. Here, we demonstrate that a vector, exosome-associated AAV (exo-AAV), is a potent carrier of transgenes to all inner ear hair cells. Exo-AAV1-GFP is more efficient than conventional AAV1-GFP, both in mouse cochlear explants in vitro and with direct cochlear injection in vivo. Exo-AAV shows no toxicity in vivo, as assayed by tests of auditory and vestibular function. Finally, exo-AAV1 gene therapy partially rescues hearing in a mouse model of hereditary deafness (lipoma HMGIC fusion partner-like 5/tetraspan membrane protein of hair cell stereocilia [ Lhfpl5/Tmhs −/− ]). Exo-AAV is a powerful gene delivery system for hair cell research and may be useful for gene therapy for deafness.
1
Exo-AAV represents a potent hair-cell gene delivery platform with potential application in treating genetic deafness.
2
Exo-AAV1-GFP transduces mouse cochlear hair cells more efficiently than conventional AAV1-GFP in vitro and after direct cochlear injection in vivo.
3
Exo-AAV1-mediated gene therapy partially rescued hearing in Lhfpl5/Tmhs−/− mice, a model of hereditary deafness.
4
Exosome-associated AAV (exo-AAV) efficiently delivers transgenes to all inner-ear hair cells, including outer hair cells refractory to conventional AAV transduction.
5
In vivo exo-AAV administration showed no detectable toxicity based on auditory and vestibular function assessments.

Inner-ear sensory hair cells, including cochlear inner and outer hair cells, in mice and a hereditary deafness mouse model

Exosome-associated AAV-mediated transgene delivery efficiency, safety, and hearing-rescue effects

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2017-01-10
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Authors
Bence György
Cyrille Sage
Artur A. Indzhykulian
Déborah Scheffer
Alain Brisson
Sisareuth Tan
Xudong Wu
Adrienn Volak
Dakai Mu
Panos I. Tamvakologos
Yaqiao Li
Zachary Fitzpatrick
Maria Ericsson
Xandra O. Breakefield
David P. Corey
Casey A. Maguire
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