Literature DB >> 33221698

Immunohistochemical location of Na+, K+-ATPase α1 subunit in the human inner ear.

Ryan Stephenson1, Astkhik Mangasarian1, Gail Ishiyama2, Kumiko Hosokawa3, Seiji Hosokawa3, Akira Ishiyama1, Ivan A Lopez4.   

Abstract

Na+, K+-ATPase (Na,K-ATPase) is an ubiquitous enzyme in the inner ear and a key factor in the maintenance of the osmotic gradient of the endolymph. This study uses Na,K-ATPase α1 subunit immunoreactivity (IR) to identify cellular structures in the normal and disease human cochlea. Formalin-fixed celloidin-embedded (FFCE) human temporal bone sections were immunoreacted with mouse monoclonal antibodies against Na,K-ATPase α1 subunit. Na,K-ATPase α1 IR was examined in the cochlea of 30 patients: four with normal hearing, 5 with Meniere's disease, and 21 with other inner ear diseases: 11 male, 19 female; ages 42 to 96 years-old (yo), average age of 77 yo. Na,K-ATPase α1 IR area was quantified using the ImageJ software program. Na,K-ATPase α1 IR was located in the stria vascularis, and in type I, II and IV fibrocytes of the spiral ligament in the cochlea from patients with normal hearing. Na,K-ATPase α1 IR was seen in Deiters's cells and inner phalangeal cells of the organ of Corti. Na,K-ATPase α1 IR was present in satellite cells that surround the neurons of the spiral ganglia. In the inner ear of pathological specimens, Na,K-ATPase IR area was decreased (compared to the normal) in the stria vascularis, supporting cells in the organ of Corti and satellite cells of the spiral ganglia. These results show that Na,K-ATPase α1 IR is a good marker to identify cellular structures of the human inner ear and may be used to study cellular changes in the cochlea associated with aging and disease. The ubiquitous localization of Na,K-ATPase α1 in the human cochlea is consistent with the Na,K-ATPase role in ionic homeostasis and osmolarity, similar to that seen in animal models.
Copyright © 2020. Published by Elsevier B.V.

Entities:  

Keywords:  Aging; Endolymphatic hydrops; Human inner ear; K(+)-ATPase; Na(+); Spiral ganglia; Stria vascularis

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Substances:

Year:  2020        PMID: 33221698      PMCID: PMC7796994          DOI: 10.1016/j.heares.2020.108113

Source DB:  PubMed          Journal:  Hear Res        ISSN: 0378-5955            Impact factor:   3.208


  2 in total

Review 1.  Charging Up the Periphery: Glial Ionic Regulation in Sensory Perception.

Authors:  Sneha Ray; Aakanksha Singhvi
Journal:  Front Cell Dev Biol       Date:  2021-08-11

2.  Na/K-ATPase Gene Expression in the Human Cochlea: A Study Using mRNA in situ Hybridization and Super-Resolution Structured Illumination Microscopy.

Authors:  Wei Liu; Helge Rask-Andersen
Journal:  Front Mol Neurosci       Date:  2022-03-31       Impact factor: 5.639

  2 in total

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