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Silence, Solitude, and Serotonin: Neural Mechanisms Linking Hearing Loss and Social Isolation

Overview
Journal Brain Sci
Publisher MDPI
Date 2020 Jun 18
PMID 32545607
Citations 15
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Abstract

For social animals that communicate acoustically, hearing loss and social isolation are factors that independently influence social behavior. In human subjects, hearing loss may also contribute to objective and subjective measures of social isolation. Although the behavioral relationship between hearing loss and social isolation is evident, there is little understanding of their interdependence at the level of neural systems. Separate lines of research have shown that social isolation and hearing loss independently target the serotonergic system in the rodent brain. These two factors affect both presynaptic and postsynaptic measures of serotonergic anatomy and function, highlighting the sensitivity of serotonergic pathways to both types of insult. The effects of deficits in both acoustic and social inputs are seen not only within the auditory system, but also in other brain regions, suggesting relatively extensive effects of these deficits on serotonergic regulatory systems. Serotonin plays a much-studied role in depression and anxiety, and may also influence several aspects of auditory cognition, including auditory attention and understanding speech in challenging listening conditions. These commonalities suggest that serotonergic pathways are worthy of further exploration as potential intervening mechanisms between the related conditions of hearing loss and social isolation, and the affective and cognitive dysfunctions that follow.

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References
1.
Xu X, Jiao Y, Tang T, Lu C, Zhang J, Salvi R . Altered Spatial and Temporal Brain Connectivity in the Salience Network of Sensorineural Hearing Loss and Tinnitus. Front Neurosci. 2019; 13:246. PMC: 6433888. DOI: 10.3389/fnins.2019.00246. View

2.
Pichora-Fuller M, Kramer S, Eckert M, Edwards B, Hornsby B, Humes L . Hearing Impairment and Cognitive Energy: The Framework for Understanding Effortful Listening (FUEL). Ear Hear. 2016; 37 Suppl 1:5S-27S. DOI: 10.1097/AUD.0000000000000312. View

3.
Cohen J, Ata A, Jackson N, Rahn E, Ramaker R, Cooper S . Differential stress induced c-Fos expression and identification of region-specific miRNA-mRNA networks in the dorsal raphe and amygdala of high-responder/low-responder rats. Behav Brain Res. 2016; 319:110-123. PMC: 5183530. DOI: 10.1016/j.bbr.2016.11.015. View

4.
Li I, Shih J, Jhao Y, Chen H, Chiu C, Chen C . Regulation of Noise-Induced Loss of Serotonin Transporters with Resveratrol in a Rat Model Using 4-[F]-ADAM/Small-Animal Positron Emission Tomography. Molecules. 2019; 24(7). PMC: 6480549. DOI: 10.3390/molecules24071344. View

5.
Sardone R, Battista P, Panza F, Lozupone M, Griseta C, Castellana F . The Age-Related Central Auditory Processing Disorder: Silent Impairment of the Cognitive Ear. Front Neurosci. 2019; 13:619. PMC: 6587609. DOI: 10.3389/fnins.2019.00619. View