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Hidden hearing loss in a Charcot-Marie-Tooth type 1A mouse model
Luis R. Cassinotti, Lingchao Ji, M. Caroline Yuk, Aditi S. Desai, Nathan D. Cass, Zahara A. Amir, Gabriel Corfas
Luis R. Cassinotti, Lingchao Ji, M. Caroline Yuk, Aditi S. Desai, Nathan D. Cass, Zahara A. Amir, Gabriel Corfas
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Research Article Neuroscience Otology

Hidden hearing loss in a Charcot-Marie-Tooth type 1A mouse model

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Abstract

Hidden hearing loss (HHL), a recently described auditory neuropathy characterized by normal audiometric thresholds but reduced sound-evoked cochlear compound action potentials, has been proposed to contribute to hearing difficulty in noisy environments in people with normal hearing thresholds and has become a widespread complaint. While most studies on HHL pathogenesis have focused on inner hair cell (IHC) synaptopathy, we recently showed that transient auditory nerve (AN) demyelination also causes HHL in mice. To test the effect of myelinopathy on hearing in a clinically relevant model, we studied a mouse model of Charcot-Marie-Tooth type 1A (CMT1A), the most prevalent hereditary peripheral neuropathy in humans. CMT1A mice exhibited the functional hallmarks of HHL together with disorganization of AN heminodes near the IHCs with minor loss of AN fibers. These results support the hypothesis that mild disruptions of AN myelination can cause HHL and that heminodal defects contribute to the alterations in the sound-evoked cochlear compound action potentials seen in this mouse model. Furthermore, these findings suggest that patients with CMT1A or other mild peripheral neuropathies are likely to suffer from HHL. Furthermore, these results suggest that studies of hearing in patients with CMT1A might help develop robust clinical tests for HHL, which are currently lacking.

Authors

Luis R. Cassinotti, Lingchao Ji, M. Caroline Yuk, Aditi S. Desai, Nathan D. Cass, Zahara A. Amir, Gabriel Corfas

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Figure 4

CMT1A and CMT1E mice have nodes of Ranvier and heminodes abnormalities.

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CMT1A and CMT1E mice have nodes of Ranvier and heminodes abnormalities.
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(A) Representative low-magnification images showing that the AN heminodes adjacent to the organ of Corti (top) and the AN myelin in the OSL (bottom) are disrupted in CMT1A (center) and CMT1E (right) cochleae at 4 months old compared with WT mice (left). Scale bar: 70 μm. (B and C) High-magnification images showing the heminodes and nodes of Ranvier and the nodes of Ranvier at the 16 kHz cochlear region from WT (left), CMT1A (center) and CMT1E (right) mice. Scale bars: 10 μm. (D) CMT1A mice have increased number of nodes of Ranvier–like structures in the 20 μm area below the disrupted heminodes compared with WT (WT, n = 10 cochleae; CMT1A, n = 12 cochleae). (E) The density of nodes of Ranvier at the level of the OSL in CMT1A mice is not affected. Samples were immunolabeled for paranodes (Caspr), nodes of Ranvier (Ankyrin-G) and myelin (MBP). WT, n = 4 cochleae; CMT1A, n = 5 cochleae. One cochlea from each mouse was analyzed, and quantifications were done at the ~16 kHz region. Nodes of Ranvier density in either the 20 μm below the heminodal area or in the OSL region was analyzed by 2-tailed t test. Quantification of heminodes and nodes of Ranvier in CMT1E mice was not possible due to the severe axonal damage exhibited. ***P < 0.001. Data are shown as mean ± SEM.

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