Neuroinflammation mediates noise-induced synaptic imbalance and tinnitus in rodent models

Wang, Weihua and Zhang, Li. S. and Zinsmaier, Alexander K. and Patterson, Genevieve and Leptich, Emily Jean and Shoemaker, Savannah L. and Yatskievych, Tatiana A. and Gibboni, Robert and Pace, Edward and Luo, Hao and Zhang, Jinsheng and Yang, Sungchil and Bao, Shaowen and Simons, Mikael (2019) Neuroinflammation mediates noise-induced synaptic imbalance and tinnitus in rodent models. PLOS Biology, 17 (6). e3000307. ISSN 1545-7885

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Abstract

Hearing loss is a major risk factor for tinnitus, hyperacusis, and central auditory processing disorder. Although recent studies indicate that hearing loss causes neuroinflammation in the auditory pathway, the mechanisms underlying hearing loss–related pathologies are still poorly understood. We examined neuroinflammation in the auditory cortex following noise-induced hearing loss (NIHL) and its role in tinnitus in rodent models. Our results indicate that NIHL is associated with elevated expression of proinflammatory cytokines and microglial activation—two defining features of neuroinflammatory responses—in the primary auditory cortex (AI). Genetic knockout of tumor necrosis factor alpha (TNF-α) or pharmacologically blocking TNF-α expression prevented neuroinflammation and ameliorated the behavioral phenotype associated with tinnitus in mice with NIHL. Conversely, infusion of TNF-α into AI resulted in behavioral signs of tinnitus in both wild-type and TNF-α knockout mice with normal hearing. Pharmacological depletion of microglia also prevented tinnitus in mice with NIHL. At the synaptic level, the frequency of miniature excitatory synaptic currents (mEPSCs) increased and that of miniature inhibitory synaptic currents (mIPSCs) decreased in AI pyramidal neurons in animals with NIHL. This excitatory-to-inhibitory synaptic imbalance was completely prevented by pharmacological blockade of TNF-α expression. These results implicate neuroinflammation as a therapeutic target for treating tinnitus and other hearing loss–related disorders.

Item Type: Article
Subjects: Article Paper Librarian > Biological Science
Depositing User: Unnamed user with email support@article.paperlibrarian.com
Date Deposited: 20 Jan 2023 05:20
Last Modified: 25 Sep 2023 05:30
URI: http://editor.journal7sub.com/id/eprint/9

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