Hu Bo Hua, Zhang Celia, Frye Mitchell D
Center for Hearing and Deafness, University at Buffalo, 137 Cary Hall, 3435 Main Street, Buffalo, NY 14214, USA.
Hear Res. 2018 May;362:14-24. doi: 10.1016/j.heares.2017.12.009. Epub 2017 Dec 20.
The cochlea has an immune environment dominated by macrophages under resting conditions. When stressed, circulating monocytes enter the cochlea. These immune mediators, along with cochlear resident cells, organize a complex defense response against pathological challenges. Since the cochlea has minimal exposure to pathogens, most inflammatory conditions in the cochlea are sterile. Although the immune response is initiated for the protection of the cochlea, off-target effects can cause collateral damage to cochlear cells. A better understanding of cochlear immune capacity and regulation would therefore lead to development of new therapeutic treatments. Over the past decade, there have been many advances in our understanding of cochlear immune capacity. In this review, we provide an update and overview of the cellular components of cochlear immune capacity with a focus on macrophages in mammalian cochleae. We describe the composition and distribution of immune cells in the cochlea and suggest that phenotypic and functional characteristics of macrophages have site-specific diversity. We also highlight the response of immune cells to acute and chronic stresses and comment on the potential function of immune cells in cochlear homeostasis and disease development. Finally, we briefly review potential roles for cochlear resident cells in immune activities of the cochlea.
在静息状态下,耳蜗具有以巨噬细胞为主导的免疫环境。受到应激时,循环单核细胞进入耳蜗。这些免疫介质与耳蜗驻留细胞一起,针对病理挑战组织复杂的防御反应。由于耳蜗极少接触病原体,耳蜗中的大多数炎症状态都是无菌性的。尽管免疫反应是为保护耳蜗而启动的,但脱靶效应可能会对耳蜗细胞造成附带损害。因此,更好地了解耳蜗免疫能力和调节将有助于开发新的治疗方法。在过去十年中,我们对耳蜗免疫能力的理解有了许多进展。在本综述中,我们提供了耳蜗免疫能力细胞成分的最新情况和概述,重点关注哺乳动物耳蜗中的巨噬细胞。我们描述了耳蜗中免疫细胞的组成和分布,并指出巨噬细胞的表型和功能特征具有位点特异性多样性。我们还强调了免疫细胞对急性和慢性应激的反应,并对免疫细胞在耳蜗内环境稳定和疾病发展中的潜在功能进行了评论。最后,我们简要回顾了耳蜗驻留细胞在耳蜗免疫活动中的潜在作用。