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Published on: July 2, 2014
Macrophages in the Human Cochlea: Saviors or Predators-A Study Using Super-Resolution Immunohistochemistry
Wei Liu1, Matyas Molnar2, Carolyn Garnham3
1Section of Otolaryngology, Department of Surgical Sciences, Uppsala University Hospital, Uppsala, Sweden.
Insights
Resident macrophages in the human inner ear, identified by IBA1, support the auditory nerve. These cells may aid nerve regeneration, benefiting cochlear implant patients.
Area of Science:
- Neuroscience
- Immunology
- Otolaryngology
Background:
- The human inner ear contains resident macrophages, including IBA1-positive cells, near blood vessels and neurons.
- Macrophages can be recruited to damaged hair cells, but resident and circulating populations may differ.
Purpose of the Study:
- To characterize resident macrophages in the human inner ear, focusing on their association with auditory nerve components.
- To investigate the potential role of these macrophages in auditory nerve preservation and regeneration.
Main Methods:
- Human cochleae were obtained during surgery.
- Immunofluorescence staining for IBA1, TUJ1, CX3CL1, and type IV collagen was performed.
- Super-resolution structured illumination microscopy (SR-SIM) and transmission electron microscopy were utilized.
Main Results:
- Remarkable phenotypic variants of IBA1 cells were observed closely associated with spiral ganglion cells.
- These cells exhibited synapse-like specializations and protrusions, adhering to neurons.
- Macrophages were seen migrating near damaged hair cells.
Conclusions:
- The human auditory nerve is supported by a resident macrophage system potentially providing neurotrophic stimulation.
- This system may explain the conservation of the human auditory nerve after deafferentiation, enabling cochlear implantation.
- IBA1 cells may play roles in immune modulation, waste removal, and nerve regeneration, with potential in future therapies.
Abstract:
The human inner ear, which is segregated by a blood/labyrinth barrier, contains resident macrophages [CD163, ionized calcium-binding adaptor molecule 1 (IBA1)-, and CD68-positive cells] within the connective tissue, neurons, and supporting cells. In the lateral wall of the cochlea, these cells frequently lie close to blood vessels as perivascular macrophages. Macrophages are also shown to be recruited from blood-borne monocytes to damaged and dying hair cells induced by noise, ototoxic drugs, aging, and diphtheria toxin-induced hair cell degeneration. Precise monitoring may be crucial to avoid self-targeting. Macrophage biology has recently shown that populations of resident tissue macrophages may be fundamentally different from circulating macrophages. We removed uniquely preserved human cochleae during surgery for treating petroclival meningioma compressing the brain stem, after ethical consent. Molecular and cellular characterization using immunofluorescence with antibodies against IBA1, TUJ1, CX3CL1, and type IV collagen, and super-resolution structured illumination microscopy (SR-SIM) were made together with transmission electron microscopy. The super-resolution microscopy disclosed remarkable phenotypic variants of IBA1 cells closely associated with the spiral ganglion cells. Monitoring cells adhered to neurons with "synapse-like" specializations and protrusions. Active macrophages migrated occasionally nearby damaged hair cells. Results suggest that the human auditory nerve is under the surveillance and possible neurotrophic stimulation of a well-developed resident macrophage system. It may be alleviated by the non-myelinated nerve soma partly explaining why, in contrary to most mammals, the human's auditory nerve is conserved following deafferentiation. It makes cochlear implantation possible, for the advantage of the profoundly deaf. The IBA1 cells may serve additional purposes such as immune modulation, waste disposal, and nerve regeneration. Their role in future stem cell-based therapy needs further exploration.
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