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Migraine-induced cochlear injury triggers ZBP1-mediated PANoptosis via CGRP signaling
Wandi Xu1, Ni Zhai2,3, Jingyu Chen1
1Department of Otorhinolaryngology, Head and Neck Surgery, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.
Objective:
Consequences of hearing abnormalities in migraine remain largely unexplored, particularly regarding peripheral outcomes. This study aims to explore how migraine induces peripheral auditory injury and what role calcitonin gene-related peptide (CGRP) plays in the inner ear, which may contribute to the precise subtyping of migraine and inform targeted auditory-protective therapies.
Methods:
A mouse model of chronic migraine (CM) was established by intermittent injections of nitroglycerin and validated via mechanical and thermal nociceptive assays. CGRP signaling was assessed by Western blotting and immunofluorescence. Auditory function was evaluated using auditory brainstem response (ABR) and distortion product otoacoustic emissions (DPOAE) in CM and CGRP blockade (Rimegepant-treated) groups. RNA sequencing of cochlear tissue identified dysregulated signaling pathways, which were subsequently validated in vitro using HEI-OC1 auditory cells and in vivo within the inner ear.
Results:
Repeated nitroglycerin injections induced persistent mechanical and thermal hyperalgesia, confirming successful model establishment. A significant upregulation of CGRP and its receptors, particularly in outer hair cells (OHCs) were confirmed. The CM mouse exhibited elevated ABR, DPOAE thresholds and OHC injury, all of which were mitigated by Rimegepant treatment. CGRP overstimulation triggered mitochondrial stress and mtDNA leakage in HEI-OC1 cells. Cytosolic mtDNA leakage activated the ZBP1-mediated PANoptosis pathway, leading to OHC injury. As proof of concept, ZBP1 knockdown and PANoptosis inhibition mitigated cellular damage and hearing deficits both in vivo and in vitro.
Conclusions:
We demonstrated OHCs as the key targets in CM-induced, CGRP-mediated peripheral hearing impairment. CGRP exerts its pathogenic role by triggering a cascade of intracellular stress and inflammatory pathways, ultimately leading to cell death. These findings provide a phenotypic basis for a subtype of migraine-induced hearing loss, paving the way for auditory protection strategies.
Insights
Migraine can cause hearing loss by damaging inner ear hair cells via calcitonin gene-related peptide (CGRP). Blocking CGRP protects hearing, offering a new therapeutic target for migraine-associated auditory injury.
Area of Science:
- Neuroscience
- Otolaryngology
- Pharmacology
Background:
- Migraine-associated hearing abnormalities are poorly understood, especially peripheral effects.
- Calcitonin gene-related peptide (CGRP) is implicated in migraine pathophysiology but its role in inner ear damage is unclear.
Purpose of the Study:
- To investigate how migraine induces peripheral auditory injury.
- To determine the role of CGRP in the inner ear during migraine.
- To explore potential auditory-protective therapies targeting CGRP.
Main Methods:
- Established a chronic migraine (CM) mouse model using nitroglycerin.
- Assessed CGRP signaling, auditory function (ABR, DPOAE), and outer hair cell (OHC) integrity.
- Investigated CGRP-induced cellular pathways (mitochondrial stress, PANoptosis) in vitro and in vivo.
Main Results:
- CM mice showed hearing deficits and OHC injury, which were improved by Rimegepant (CGRP blockade).
- CGRP overstimulation led to mitochondrial stress, mtDNA leakage, and ZBP1-mediated PANoptosis in OHCs.
- Inhibition of ZBP1 and PANoptosis reduced OHC damage and hearing loss.
Conclusions:
- Outer hair cells are key targets in CGRP-mediated migraine-induced hearing impairment.
- CGRP triggers intracellular stress and inflammation, causing OHC death and hearing loss.
- These findings support a migraine-induced hearing loss subtype and potential auditory protection strategies.
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