Searching the Resource Information Network

Our searching services are busy right now. Please try again later

  • Register
X
Forgot Password

If you have forgotten your password you can enter your email here and get a temporary password sent to your email.

X

Leaving Community

Are you sure you want to leave this community? Leaving the community will revoke any permissions you have been granted in this community.

No
Yes

Impulse Noise Induced Hidden Hearing Loss, Hair Cell Ciliary Changes and Oxidative Stress in Mice.

Paul Gratias | Jamal Nasr | Corentin Affortit | Jean-Charles Ceccato | Florence François | François Casas | Rémy Pujol | Sylvie Pucheu | Jean-Luc Puel | Jing Wang
Antioxidants (Basel, Switzerland) | 2021

Recent studies demonstrated that reversible continuous noise exposure may induce a temporary threshold shift (TTS) with a permanent degeneration of auditory nerve fibers, although hair cells remain intact. To probe the impact of TTS-inducing impulse noise exposure on hearing, CBA/J Mice were exposed to noise impulses with peak pressures of 145 dB SPL. We found that 30 min after exposure, the noise caused a mean elevation of ABR thresholds of ~30 dB and a reduction in DPOAE amplitude. Four weeks later, ABR thresholds and DPOAE amplitude were back to normal in the higher frequency region (8-32 kHz). At lower frequencies, a small degree of PTS remained. Morphological evaluations revealed a disturbance of the stereociliary bundle of outer hair cells, mainly located in the apical regions. On the other hand, the reduced suprathreshold ABR amplitudes remained until 4 weeks later. A loss of synapse numbers was observed 24 h after exposure, with full recovery two weeks later. Transmission electron microscopy revealed morphological changes at the ribbon synapses by two weeks post exposure. In addition, increased levels of oxidative stress were observed immediately after exposure, and maintained for a further 2 weeks. These results clarify the pathology underlying impulse noise-induced sensory dysfunction, and suggest possible links between impulse-noise injury, cochlear cell morphology, metabolic changes, and hidden hearing loss.

Pubmed ID: 34942983

Publication data is provided by the National Library of Medicine ® and PubMed ®. Data is retrieved from PubMed ® on a weekly schedule. For terms and conditions see the National Library of Medicine Terms and Conditions.

This is a list of tools and resources that we have found mentioned in this publication.


Rabbit Anti-MnSOD Polyclonal Antibody, Unconjugated (antibody)

RRID:AB_300434

This polyclonal targets Superoxide Dismutase 2

View all literature mentions

Homer1 antibody (antibody)

RRID:AB_1950505

This polyclonal targets Homer1

View all literature mentions

Monoclonal Anti-Neurofilament 200 (Phos. and Non-Phos.) antibody produced in mouse (antibody)

RRID:AB_477257

This monoclonal targets Neurofilament 200 (Phos. and Non-Phos.) antibody produced in mouse

View all literature mentions

Anti-VGLUT 3 (antibody)

RRID:AB_2619825

This polyclonal targets VGLUT 3

View all literature mentions