Shelby A Payne, Haley R Anderson, Isaac M Brown, Jiaxin Chai, Peng Chen, Hai Yao, Jeremy L Barth, Hainan Lang
The auditory nerve (AN) glial transition zone (GTZ), where myelination shifts from Schwann cells in the peripheral AN to oligodendrocytes in the central AN, is a unique biological niche housed within the cochlear modiolus. Although age-related hearing loss (ARHL) is associated with AN degeneration, the neuroimmune mechanisms contributing to age-related myelin pathology and altered immune cell function remain poorly defined. We hypothesized that the AN GTZ is especially vulnerable to age-related immune activity which may contribute to AN degeneration and myelin pathology. Using an ARHL mouse model, we combined large-field light sheet microscopy of tissue-cleared mouse temporal bones, three-dimensional high-resolution imaging, and quantitative immunohistochemistry to evaluate the AN GTZ. RNA-sequencing was used to evaluate age-related changes in gene expression of the whole AN. Human temporal bones were also examined to evaluate the AN and its macrophages/microglia. RNA-sequencing revealed age-associated enrichment of neuroinflammation and myelin degeneration-related pathways. Aging was associated with an increase in Iba1+ macrophages/microglia throughout the AN, with prominent accumulation at the AN GTZ. The aged AN GTZ contained Iba1+ subpopulations expressing CD206, Gal3, CD163, and Lamp1, suggesting enhanced phagocytic activity and altered activation state at the AN GTZ. CD68+ cells were also increased at the AN GTZ, as well as the central AN, with aging. Macrophages/microglia contained significantly more internalized myelin debris across all regions of the AN with aging, including myelin localized within Lamp1+ lysosomes of Iba1+ cells. More importantly, normal-appearing myelin was frequently observed within macrophages/microglia at the AN GTZ, but not in the peripheral or central regions of the AN. Myelin debris within Iba1+ cells was also found in the human AN, consistent with our findings in mouse. Together, these findings identify the AN GTZ as a unique microenvironment with age-related alterations in phagocytic activity and immune activation. The immune cell heterogeneity and enhanced myelin phagocytosis observed in the aging AN emphasize the importance of defining how distinct macrophage/microglia populations contribute to AN degeneration and ARHL.