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Updated: Jul 11, 2026

Modified Experimental Conditions for Noise-Induced Hearing Loss in Mice and Assessment of Hearing Function and Outer Hair Cell Damage
Published on: February 10, 2023
Estrogen and the inner ear: megalin knockout mice suffer progressive hearing loss
Ovidiu König1, Lukas Rüttiger, Marcus Müller
1Universitäts-HNO-Klinik, Elfriede-Aulhorn-Strasse 5, D-72076 Tübingen, Germany.
Abstract:
Megalin, the largest member of the low-density lipoprotein receptor-related protein family, functions as an endocytic receptor for a variety of essential lipophilic metabolites, including the steroid hormone estrogen. In the cochlea, megalin is strongly expressed within the marginal cells of the stria vascularis, and previous studies demonstrated that beta-estrogen receptors are also expressed in megalin-expressing marginal cells. In the present study, we demonstrate that homozygous megalin mutant mice exhibit profound hearing loss at 3 months of age associated with features of presbycusis, enrichment of lipofuscin granules, and a reduced number of microvilli in marginal cells of the stria vascularis. FITC-labeled beta-estrogen is taken up into the strial marginal cells; however, in megalin-deficient mice the uptake of FITC-labeled beta-estrogen is reduced. This highlights beta-estrogen as a possible carrier-bound candidate ligand for megalin and supports the concept that estrogen may function via megalin within the inner ear. A crucial role of megalin in hearing should be considered and the megalin/estrogen interaction needs to be discussed in the context of early presbycusis in estrogen-deficient humans and mice.
Insights
Megalin, an essential protein, is crucial for hearing. Its deficiency in mice leads to hearing loss and aging-related ear changes, suggesting a link between megalin, estrogen, and auditory health.
Area of Science:
- Otolaryngology
- Cell Biology
- Genetics
Background:
- Megalin is a large endocytic receptor involved in transporting lipophilic metabolites, including estrogen.
- Megalin and beta-estrogen receptors are co-expressed in the cochlea's stria vascularis marginal cells.
Purpose of the Study:
- To investigate the role of megalin in the inner ear and its potential interaction with estrogen.
- To determine the impact of megalin deficiency on hearing and cochlear structure.
Main Methods:
- Utilized homozygous megalin mutant mice to study hearing loss and cochlear phenotypes.
- Assessed the uptake of FITC-labeled beta-estrogen in strial marginal cells of wild-type and megalin-deficient mice.
Main Results:
- Megalin-deficient mice exhibited significant hearing loss and presbycusis-like features by 3 months of age.
- These mice showed increased lipofuscin granules and fewer microvilli in strial marginal cells.
- Uptake of beta-estrogen into strial marginal cells was reduced in megalin-deficient mice.
Conclusions:
- Megalin plays a critical role in maintaining hearing function.
- Estrogen may act via megalin in the inner ear, suggesting a link between megalin/estrogen interaction and early presbycusis.

