Unlocking the human inner ear for therapeutic intervention

Author:

Li Hao,Agrawal Sumit,Rohani Seyed Alireza,Zhu Ning,Cacciabue Daniela I.,Rivolta Marcelo N.,Hartley Douglas E. H.,Jiang Dan,Ladak Hanif M.,O’Donoghue Gerard M.,Rask-Andersen Helge

Abstract

AbstractThe human inner ear contains minute three-dimensional neurosensory structures that are deeply embedded within the skull base, rendering them relatively inaccessible to regenerative therapies for hearing loss. Here we provide a detailed characterisation of the functional architecture of the space that hosts the cell bodies of the auditory nerve to make them safely accessible for the first time for therapeutic intervention. We used synchrotron phase-contrast imaging which offers the required microscopic soft-tissue contrast definition while simultaneously displaying precise bony anatomic detail. Using volume-rendering software we constructed highly accurate 3-dimensional representations of the inner ear. The cell bodies are arranged in a bony helical canal that spirals from the base of the cochlea to its apex; the canal volume is 1.6 μL but with a diffusion potential of 15 μL. Modelling data from 10 temporal bones enabled definition of a safe trajectory for therapeutic access while preserving the cochlea’s internal architecture. We validated the approach through surgical simulation, anatomical dissection and micro-radiographic analysis. These findings will facilitate future clinical trials of novel therapeutic interventions to restore hearing.

Funder

Uppsala University

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference22 articles.

1. WHO World Report on Hearing 2021 (2021). (3/3/2021), https://www.who.int/publications/i/item/world-report-on-hearing Global report ISBN: 9789240020481

2. Hudspeth, A. J. Integrating the active process of hair cells with cochlear function. Nat. Rev. Neurosci. 15, 600–614 (2014).

3. Liberman, M. C. & Kujawa, S. G. Cochlear synaptopathy in acquired sensorineural hearing loss: Manifestations and mechanisms. Hear. Res. 349, 138–147 (2017).

4. Zhang, T., Dorman, M. F., Gifford, R. & Moore, B. C. J. Cochlear dead regions constrain the benefit of combining acoustic stimulation with electric stimulation. Ear Hear. 35, 410–417 (2014).

5. Furness, D. N. Forgotten fibrocytes: A neglected, supporting cell type of the cochlea with the potential to be an alternative therapeutic target in hearing loss. Front. Cell. Neurosci. 2019, 13 (2019).

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