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Updated: Aug 22, 2025

Trans-Tympanic Drug Delivery for the Treatment of Ototoxicity
Published on: March 16, 2018
Multiplex immunohistochemistry reveals cochlear macrophage heterogeneity and local auditory nerve inflammation in
Mai Mohamed Bedeir1, Yuzuru Ninoyu1, Takashi Nakamura1
1Department of Otolaryngology-Head and Neck Surgery, Kyoto Prefectural University of Medicine, Kyoto, Japan.
Abstract:
Inner ear macrophages play a vital role in cochlear homeostasis. Recent studies have demonstrated the existence of macrophages at different sites of the cochlea, with increased cochlear infiltration as an inflammatory response mechanism to injury. However, current methods, such as conventional immunohistochemistry and flow cytometry, provide limited information about the diversity of cochlear macrophages. Recently, multiplex immunohistochemistry (mIHC) successfully identified the heterogeneity of immune cells in cancer tissue and thereby improved our understanding of the disease prognosis. In this study, we modified the mIHC technique for cochlear tissue and utilized it to investigate cochlear macrophage behavior and heterogeneity before and after exposure to ototoxic drugs such as cisplatin. Four-week-old C57BL/6N female mice were intraperitoneally injected with cisplatin at 5 mg/kg/day consecutively for 6 days. Their hearing levels were assessed before and after the injection. Their cochleae were harvested before (day 0) and on days 8 and 15 after the cisplatin injection. Paraffin-embedded sections were sequentially immunostained using macrophage surface markers to identify the different categories of macrophages. Each immunostaining cycle included incubation with primary antibody, incubation with secondary antibody, chromogenic staining, and image scanning. Thereafter, all antibodies were stripped out, and antigen retrieval was performed to prepare the tissue for the next cycle. The results revealed that activated cochlear macrophages were not entirely differentiated into M1 or M2 categories but into multi-marker M1/M2 mixed macrophages. Furthermore, the ratio of these mixed (M1/M2) macrophages to Iba1+ macrophages increased in the auditory nerve after cisplatin exposure, suggesting local auditory nerve inflammation. The increase in the population of activated macrophages in the auditory nerve region was concomitant with the temporary shift of hearing threshold on day 8 post-cisplatin injection. The findings of this study indicate the effectiveness of mIHC in identifying cochlear macrophage heterogeneity both in the resting state and after cisplatin exposure. Therefore, mIHC could be a powerful tool in cochlear immunology research. Our findings may provide new insights into the co-relation between the cochlear macrophage and cisplatin exposure.
Insights
Inner ear macrophages exhibit mixed M1/M2 activation after cisplatin exposure. Multiplex immunohistochemistry reveals cochlear macrophage heterogeneity and auditory nerve inflammation, linking it to hearing loss.
Area of Science:
- Immunology
- Neuroscience
- Otolaryngology
Background:
- Inner ear macrophages are crucial for cochlear homeostasis and respond to injury.
- Conventional methods limit understanding of cochlear macrophage diversity.
- Multiplex immunohistochemistry (mIHC) reveals immune cell heterogeneity in other tissues.
Purpose of the Study:
- To adapt mIHC for cochlear tissue.
- To investigate cochlear macrophage heterogeneity before and after cisplatin exposure.
- To explore the relationship between cochlear macrophages and cisplatin-induced ototoxicity.
Main Methods:
- Modified multiplex immunohistochemistry (mIHC) on mouse cochlear sections.
- Sequential immunostaining for macrophage markers before and after cisplatin injection.
- Assessment of hearing levels and cochlear tissue at different time points.
Main Results:
- Activated cochlear macrophages displayed multi-marker M1/M2 phenotypes, not solely M1 or M2.
- Cisplatin exposure increased the ratio of mixed M1/M2 macrophages in the auditory nerve.
- Increased activated macrophages correlated with temporary hearing threshold shifts post-cisplatin.
Conclusions:
- mIHC is effective for analyzing cochlear macrophage heterogeneity.
- Cisplatin induces local auditory nerve inflammation via macrophage activation.
- mIHC offers a powerful tool for cochlear immunology research.

