Defective mechanosensory transduction of the new inner hair cells prevents hearing recover in the damaged cochlea
Li, X.; Ren, M.; Gu, Y.; Zhu, T.; Zhang, Y.; Li, J.; Li, C.; Wang, G.; Song, L.; Bi, Z.; Liu, Z.
Show abstract
ABSTRACTHearing loss is a major health problem worldwide. Numerous attempts at regenerating functional hair cells (HCs) have been unsuccessful, but little is known about the main barrier that prevents us from achieving it and improving the hearing ability after damage. Here, we developed an in vivo genetic mouse model, by which the inner HCs (IHCs), the primary sound receptors innervated by the auditory neurons, were specifically damaged and the neighboring nonsensory supporting cells (SCs) were transformed into IHCs by ectopic expression of transient Atoh1 and permanent Tbx2. Despite [~]477 new IHCs were regenerated per cochlea and their differentiation status was more advanced than reported previously, no significant hearing improvement was achieved. By taking advantage of this unique model, we further found that the new IHCs expressed the functional marker vGlut3, harbored the similar transcriptomic profiles and electrophysiological properties as the endogenous IHCs. However, the mechanosensory transduction (MET) current could not be recorded in the new IHCs. Thus, our study indicated that the defective MET should be the main barrier that stops us from restoring the hearing capacity in the damaged cochlea and would pave the way for regenerating IHCs in vivo.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Dual expression of Atoh1 and Ikzf2 promotes transformation of adult cochlear supporting cells into outer hair cells 96%
- Repressor element 1-silencing transcription factor deficiency yields profound hearing loss through Kv7.4 channel upsurge in auditory neurons and hair cells 95%
- Differential regulation of hair cell actin cytoskeleton mediated by SRF and MRTFB 94%
Similar papers in this journal
- Non-neuronal expression of SARS-CoV-2 entry genes in the olfactory system suggests mechanisms underlying COVID-19-associated anosmia 94%
- Longer metaphase and fewer chromosome segregation errors in modern human than Neandertal brain development 93%
- Macrophage Depletion Protects Against Cisplatin-Induced Ototoxicity and Nephrotoxicity 93%
Similar papers in this journal
- LIN28B controls the regenerative capacity of neonatal murine auditory supporting cells through activation of mTOR signaling 96%
- Lateral olivocochlear neurons modulate cochlear responses to noise exposure 96%
- ISL1 is necessary for auditory neuron development and contributes towards tonotopic organization 95%
Similar papers in this journal
- Mapping the developmental potential of mouse inner ear organoids at single-cell resolution 95%
- Locomotion-induced neural activity independent of auditory feedback in the mouse inferior colliculus 93%
- Molecular differences between neonatal and adult stria vascularis from organotypic explants and transcriptomics 93%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.