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The Meniere attack: an ischemia/reperfusion disorder of inner ear sensory tissues
1University of Colorado School of Medicine, Dept. of Otolaryngology, 12631 E. 17th Ave., B-205, Aurora, CO 80045, United States.
Abstract:
We believe Meniere attacks arise as a chance association of endolymphatic hydrops and vascular risk factors for intracerebral ischemia. Hydrops acts as a variable Starling resistor upon the inner ear vasculature that is capable of inducing ischemic attacks only in people with reduced perfusion pressure in the ear. The unique characteristics of the attacks (loss of vestibular response and hearing acutely followed by a return to apparent normalcy over hours) are explained by the differential sensitivity of the inner ear tissues to transient ischemia, with the sensory tissues (dendrites, hair cells) vulnerable to hours-long ischemia/reperfusion injury, and the stria vulnerable to ischemia due to its high metabolic rate. Permanent hearing loss and vestibular damage after many attacks would result when small areas of irreversible sensory cell damage accumulate and become confluent. This theory is supported by the strong correlation of hydrops with Meniere attacks, the finding that autoregulation of cochlear blood flow is impaired in the hydropic ear, and studies demonstrating that symptoms and signs in people and in animal models vary with conditions that alter perfusion pressure in the inner ear. Induction of Meniere attacks in animal models requires both hydrops and a mechanism that reduces perfusion pressure, such as epinephrine injection or head dependency. There is a strong clinical association between Meniere attacks and disorders that increase the risk for cerebrovascular ischemia, such as migraine. The excitable tissues in the sensory structures have long been known to be more vulnerable to ischemia than the remaining aural tissues, and are now known to be vulnerable to excitotoxicity induced by ischemia/reperfusion. This correlates well with autopsy evidence of damage to dendrites and hair cells and with strial atrophy in late Meniere disease cases. If this hypothesis is confirmed, treatment of vascular risk factors may allow control of symptoms and result in a decreased need for ablative procedures in this disorder. If attacks are controlled, the previously inevitable progression to severe hearing loss may be preventable in some cases.
Insights
Meniere attacks may result from endolymphatic hydrops combined with vascular issues causing inner ear ischemia. Managing vascular risks could control symptoms and prevent hearing loss progression.
Area of Science:
- Otolaryngology
- Neurology
- Vascular Medicine
Background:
- Meniere disease is characterized by episodic vertigo, hearing loss, tinnitus, and aural fullness.
- The underlying pathophysiology of Meniere disease remains incompletely understood, with endolymphatic hydrops being a consistent finding.
Purpose of the Study:
- To propose a unifying hypothesis for Meniere attacks, linking endolymphatic hydrops with vascular risk factors for intracerebral ischemia.
- To explain the transient nature of Meniere attacks and the progressive damage observed in the inner ear.
Main Methods:
- The study presents a theoretical model based on existing literature and clinical observations.
- It integrates findings on inner ear vasculature, ischemia/reperfusion injury, and the effects of perfusion pressure.
- Animal models of Meniere disease were reviewed, requiring both hydrops and reduced perfusion pressure for attack induction.
Main Results:
- Meniere attacks are hypothesized to occur when endolymphatic hydrops creates a Starling resistor effect on inner ear vasculature, inducing ischemia in susceptible individuals with reduced perfusion pressure.
- Differential vulnerability of inner ear tissues (sensory cells, stria vascularis) to transient ischemia explains the acute symptoms and subsequent recovery.
- Accumulated, irreversible damage to sensory cells and strial atrophy are proposed mechanisms for permanent hearing loss and vestibular deficits.
Conclusions:
- The proposed theory integrates hydrops, vascular risk factors, and ischemia/reperfusion injury to explain Meniere attacks.
- Clinical associations with migraine and autopsy findings support the role of ischemia and excitotoxicity.
- Treating vascular risk factors may offer a novel approach to managing Meniere disease, potentially preventing disease progression and reducing the need for ablative treatments.
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