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April 15, 2026Clinical Interventions in Aging1 citationsOpen Access

Cochlear Inflammatory Microenvironment in Age-Related Hearing Loss: Mechanisms and Recent Advances

XLXiang LiZWZhenhua WuQZQiang Zhou

Key Points

  • To explore the mechanisms of cochlear inflammation in age-related hearing loss and its implications for therapy.
  • Conducted a literature review on age-related hearing loss and cochlear inflammatory microenvironment.
  • Analyzed structural changes and pathological remodeling associated with aging in the cochlea.
  • Reviewed potential therapeutic strategies targeting cochlear inflammation.
  • Identified significant links between impaired immune regulation and cochlear inflammation.
  • Highlighted how oxidative stress contributes to cochlear dysfunction during aging.
  • Outlined potential therapeutic approaches to mitigate inflammation and improve hearing outcomes.

Abstract

Abstract: Age-related hearing loss (ARHL) is a common sensory disorder in older adults and a major public health concern that reduces quality of life and social functioning. Traditionally, ARHL has been associated with hair cell apoptosis, strial degeneration, spiral ganglion neuron loss, oxidative stress, and mitochondrial dysfunction. Recent studies suggest that dysregulation of the cochlear inflammatory microenvironment also contributes to its onset and progression. During aging, impaired immune regulation, weakened antioxidant defenses, blood-labyrinth barrier dysfunction, and persistent pro-inflammatory signaling disturb cochlear homeostasis and promote pathological remodeling, leading to injury of hair cells, synapses, and auditory neurons. In addition, systemic chronic low-grade inflammation, metabolic disturbances, and vascular dysfunction may further worsen cochlear inflammation. This review summarizes the structural basis, maladaptive remodeling, functional consequences, and potential therapeutic strategies of the cochlear inflammatory microenvironment in ARHL. Keywords: age-related hearing loss, presbycusis, cochlear inflammation, inflammaging, oxidative stress

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69df2bcae4eeef8a2a6b0b56https://doi.org/10.2147/cia.s590182
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