ArticleThe Journal of neuroscience : the official journal of the Society for Neuroscience2015
Retinoic Acid Signaling Mediates Hair Cell Regeneration by Repressing p27kip and sox2 in Supporting Cells.
Article in The Journal of neuroscience : the official journal of the Society for Neuroscience, 2015. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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Who cites it
12 citing papers in PubMed, 25 citations in OpenAlex.
- Transcriptomic profiling of inner ear hair cell spontaneous regeneration reveals the key role of dlx5a.Nature communications · 2026Article
- The Cxcl14 chemokine defines pioneer axon guidance and early circuit assembly in the inner ear.bioRxiv : the preprint server for biology · 2026Article
- Gene therapy: an emerging therapy for hair cells regeneration in the cochlea.Frontiers in neuroscience · 2023Review
- Notch signaling induces either apoptosis or cell fate change in multiciliated cells during mucociliary tissue remodeling.Developmental cell · 2021Article
- Generation of Cochlear Hair Cells from Sox2 Positive Supporting Cells via DNA Demethylation.International journal of molecular sciences · 2020Article
- Suppression of Inflammation Delays Hair Cell Regeneration and Functional Recovery Following Lateral Line Damage in Zebrafish Larvae.Biomolecules · 2020Article
- Retinoic acid synthesis and autoregulation mediate zonal patterning of vestibular organs and inner ear morphogenesis.Development (Cambridge, England) · 2020Article
- Regulating Retinoic Acid Availability during Development and Regeneration: The Role of the CYP26 Enzymes.Journal of developmental biology · 2020Review
- Didelphis albiventris: an overview of unprecedented transcriptome sequencing of the white-eared opossum.BMC genomics · 2019Article
- Whole-exome sequencing identifies common and rare variant metabolic QTLs in a Middle Eastern population.Nature communications · 2018Article
- Cochlear hair cell regeneration after noise-induced hearing loss: Does regeneration follow development?Hearing research · 2017Review
- Inhibition of H3K27me3 Histone Demethylase Activity Prevents the Proliferative Regeneration of Zebrafish Lateral Line Neuromasts.Frontiers in molecular neuroscience · 2017Article
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Authors and funding
4 authors at 2 institutions in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
During development, otic sensory progenitors give rise to hair cells and supporting cells. In mammalian adults, differentiated and quiescent sensory cells are unable to generate new hair cells when these are lost due to various insults, leading to irreversible hearing loss. Retinoic acid (RA) has strong regenerative capacity in several organs, but its role in hair cell regeneration is unknown. Here, we use genetic and pharmacological inhibition to show that the RA pathway is required for hair cell regeneration in zebrafish. When regeneration is induced by laser ablation in the inner ear or by neomycin treatment in the lateral line, we observe rapid activation of several components of the RA pathway, with dynamics that position RA signaling upstream of other signaling pathways. We demonstrate that blockade of the RA pathway impairs cell proliferation of supporting cells in the inner ear and lateral line. Moreover, in neuromast, RA pathway regulates the transcription of p27(kip) and sox2 in supporting cells but not fgf3. Finally, genetic cell-lineage tracing using Kaede photoconversion demonstrates that de novo hair cells derive from FGF-active supporting cells. Our findings reveal that RA has a pivotal role in zebrafish hair cell regeneration by inducing supporting cell proliferation, and shed light on the underlying transcriptional mechanisms involved. This signaling pathway might be a promising approach for hearing recovery. SIGNIFICANCE STATEMENT: Hair cells are the specialized mechanosensory cells of the inner ear that capture auditory and balance sensory input. Hair cells die after acoustic trauma, ototoxic drugs or aging diseases, leading to progressive hearing loss. Mammals, in contrast to zebrafish, lack the ability to regenerate hair cells. Here, we find that retinoic acid (RA) pathway is required for hair cell regeneration in vivo in the zebrafish inner ear and lateral line. RA pathway is activated very early upon hair cell loss, promotes cell proliferation of progenitor cells, and regulates two key genes, p27(kip) and sox2. Our results position RA as an essential signal for hair cell regeneration with relevance in future regenerative strategies in mammals.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.