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WDR1 expression in the normal and noise-damaged chick vestibule
- Source :
- Journal of vestibular research : equilibriumorientation. 17(4)
- Publication Year :
- 2008
-
Abstract
- Unlike mammals, avian cochlear hair cells can regenerate after acoustic overstimulation. The WDR1 gene is one of the genes suspected to play an important role in this difference. In an earlier study, we found that the WDR1 gene is over-expressed in the chick cochlea after acoustic overstimulation. The aim of this study was to compare the expression of WDR1 before and after acoustic overstimulation in the chick vestibule. Seven-day-old chicks were divided into three groups: normal group, damage group, and regeneration group. The damage and regeneration group was exposed to 120 dB SPL white noise for 5–6 hours. The damage group was euthanized shortly after the impulse, but the regeneration group was allowed to recover for 2 days. The utricle, saccule, and the three ampullae of each semicircular canal were dissected and immunohistochemically stained with anti-WD40 repeat protein 1 antibody. For quantitative analysis, immunoreactive densities were measured and quantitative real-time RT PCR was performed. WD40 repeat protein 1 expression was elevated in all the semicircular canals and utricle, two days after an acoustic overstimulation (P = 0.001). WDR1 mRNA expression was 1.34 times higher in the regeneration group compared to the normal group, but it was not statistically significant. Exceptionally, WD40 repeat protein 1 expression did not increase in the saccule of the regeneration group. Elevated WDR1 expression in the avian vestibule may have a role in the hair cell regenerating ability as in the avian cochlea. A similar mechanism of hair cell regeneration may exist in the avian cochlea and vestibule.
- Subjects :
- Pathology
medicine.medical_specialty
Gene Expression
Stimulation
Biology
Utricle
otorhinolaryngologic diseases
medicine
Animals
Regeneration
RNA, Messenger
Cochlea
Semicircular canal
Reverse Transcriptase Polymerase Chain Reaction
General Neuroscience
Regeneration (biology)
Microfilament Proteins
Immunohistochemistry
Sensory Systems
Protein Transport
medicine.anatomical_structure
Otorhinolaryngology
Acoustic Stimulation
Hearing Loss, Noise-Induced
Vestibule
sense organs
Neurology (clinical)
Hair cell
Saccule
Vestibule, Labyrinth
Chickens
Subjects
Details
- ISSN :
- 09574271
- Volume :
- 17
- Issue :
- 4
- Database :
- OpenAIRE
- Journal :
- Journal of vestibular research : equilibriumorientation
- Accession number :
- edsair.doi.dedup.....34dbe54d409ff44fdf6bc7a55b0ebf61