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Surgical Induction of Endolymphatic Hydrops by Obliteration of the Endolymphatic Duct
Published on: January 22, 2010
Circadian rhythm disruptions exacerbate inner ear damage in a murine endolymphatic hydrops model
Bo Pang1,2,3, Yijiang Bai1,2,3, Yongjia Chen1,2,3
1Department of Otolaryngology-Head and Neck Surgery, Xiangya Hospital, Central South University, Changsha, Hunan, China.
Abstract:
Meniere's disease (MD) is an inner ear disease characterized by endolymphatic hydrops (EH). Maintaining a regular daily routine is crucial for MD patients. However, the relationship between circadian rhythms and MD remains unclear. Therefore, we investigated the effect of circadian rhythm on endolymphatic hydrops and its underlying mechanisms. Mice with endolymphatic hydrops were subjected to chronic jet lag (CJL) conditions to simulate the MD patients under circadian rhythm disruptions. We assessed whether this disruption would exacerbate inner ear damage with endolymphatic hydrops. RNA-seq of the inner ear and bioinformatic analysis were performed. Then, the expression of PER2, AQP2, AQP4, AQP5, and BDNF were assessed, and the morphological changes were evaluated in the inner ear. Our findings showed circadian rhythm disruption affected the cochlear internal clock genes in the inner ear, particularly in mice with EH. EH mice under CJL conditions exhibited exacerbated hearing impairment and an increased severity of EH. GO enrichment analysis revealed that the regulation of fluid homeostasis and neurotransmitter release at synapses were significantly enriched. Disruption of circadian rhythms disturbed the expression pattern of PER2, reduced BDNF levels, and affected the expression of aquaporins in the cochlea. Moreover, the disruption of circadian rhythm compromised inner hair cell synapses and auditory nerve fibers. This study indicated that disruption of circadian rhythms may exacerbate inner ear damage in endolymphatic hydrops mice by affecting the aquaporins and compromising synapses and auditory nerves in the inner ear. BDNF and PER2 may play a central role in these pathophysiological processes.
Insights
Circadian rhythm disruption worsens Meniere
Area of Science:
- Inner ear physiology
- Chronobiology
- Otolaryngology
Background:
- Meniere's disease (MD) involves endolymphatic hydrops (EH).
- The impact of circadian rhythm disruption on MD is not well understood.
- Maintaining daily routines is vital for MD patients.
Purpose of the Study:
- To investigate how circadian rhythm disruption affects endolymphatic hydrops.
- To explore the underlying molecular mechanisms.
- To assess the impact on inner ear damage and function.
Main Methods:
- Mice with endolymphatic hydrops (EH) were exposed to chronic jet lag (CJL).
- RNA sequencing and bioinformatic analysis of inner ear tissues were performed.
- Gene expression (PER2, AQP2, AQP4, AQP5, BDNF) and morphological changes were evaluated.
Main Results:
- Circadian disruption exacerbated hearing loss and EH severity in mice.
- Inner ear clock genes, aquaporins, BDNF, and PER2 expression were altered.
- Inner hair cell synapses and auditory nerve fibers were compromised.
Conclusions:
- Circadian rhythm disruption exacerbates inner ear damage in endolymphatic hydrops.
- Altered aquaporin and BDNF expression, along with compromised synapses, contribute to pathology.
- PER2 and BDNF may be key players in Meniere's disease pathophysiology.

