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Autophagy Contributes to the Rapamycin-Induced Improvement of Otitis Media
Daoli Xie1, Tong Zhao1, Xiaolin Zhang2
1Hearing and Speech Rehabilitation Institute, College of Special Education, Binzhou Medical University, Yantai, China.
Abstract:
Otitis media (OM) is a pervasive disease that involves hearing loss and severe complications. In our previous study, we successfully established a mouse model of human OM using Tlr2tm1Kir (TLR2-/-) mice with middle ear (ME) inoculation of streptococcal peptidoglycan-polysaccharide (PGPS). In this study, we found that hearing loss and OM infections in OM mice were significantly alleviated after treatment with rapamycin (RPM), a widely used mechanistic target of RPM complex 1 (mTORC1) inhibitor and autophagy inducer. First of all, we tested the activity of mTORC1 by evaluating p-S6, Raptor, and mTOR protein expression. The data suggested that the protein expression level of p-S6, Raptor and mTOR are decreased in TLR2-/- mice after the injection of PGPS. Furthermore, our data showed that both the autophagosome protein LC3-II, Beclin-1, ATG7, and autophagy substrate protein p62 accumulated at higher levels in mice with OM than in OM-negative mice. The expression of lysosomal-associated proteins LAMP1, Cathepsin B, and Cathepsin D increased in the OM mice compared with OM-negative mice. Rab7 and Syntaxin 17, which is necessary for the fusion of autophagosomes with lysosomes, are reduced in the OM mice. In addition, data also described that the protein expression level of p-S6, mTOR and Raptor are lower than PGPS group after RPM treatment. The accumulation of LC3-II, Beclin-1, and ATG7 are decreased, and the expression of Rab7 and Syntaxin 17 are increased significantly after RPM treatment. Our results suggest that autophagy impairment is involved in PGPS-induced OM and that RPM improves OM at least partly by relieving autophagy impairment. Modulating autophagic activity by RPM may be a possible effective treatment strategy for OM.
Insights
Rapamycin (RPM) treatment alleviates hearing loss and otitis media (OM) in a mouse model. RPM improves autophagy impairment, suggesting it as a potential therapeutic strategy for OM.
Area of Science:
- Immunology
- Cell Biology
- Otolaryngology
Background:
- Otitis media (OM) is a common condition causing hearing loss and complications.
- A mouse model of OM was previously established using TLR2 knockout mice and streptococcal peptidoglycan-polysaccharide (PGPS).
Purpose of the Study:
- To investigate the therapeutic effect of rapamycin (RPM) on OM and hearing loss in a mouse model.
- To explore the role of autophagy and mTORC1 signaling in OM pathogenesis and RPM's mechanism of action.
Main Methods:
- Established a mouse model of OM using TLR2-/- mice inoculated with PGPS.
- Administered RPM to OM mice and assessed hearing loss and middle ear infection.
- Analyzed protein expression related to mTORC1 signaling (p-S6, Raptor, mTOR) and autophagy (LC3-II, Beclin-1, ATG7, p62).
- Evaluated lysosomal proteins (LAMP1, Cathepsin B/D) and autophagosome-lysosome fusion proteins (Rab7, Syntaxin 17).
Main Results:
- RPM treatment significantly alleviated hearing loss and OM in mice.
- PGPS-induced OM showed decreased mTORC1 activity and impaired autophagy (accumulated LC3-II, Beclin-1, ATG7, p62).
- RPM treatment restored mTORC1 activity, improved autophagy, and enhanced autophagosome-lysosome fusion (increased Rab7, Syntaxin 17).
Conclusions:
- Autophagy impairment is implicated in PGPS-induced otitis media.
- Rapamycin ameliorates OM by relieving autophagy impairment, highlighting its potential as a therapeutic agent.
- Modulating autophagic activity with RPM offers a promising treatment strategy for otitis media.
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