Department of Medical Engineering, College of Engineering, University of South Florida, Tampa, FL 33620, USA.
Global Center for Hearing and Speech Research, University of South Florida, Tampa, FL 33612, USA.
Int J Mol Sci. 2021 Jun 7;22(11):6158. doi: 10.3390/ijms22116158.
The auditory system is a fascinating sensory organ that overall, converts sound signals to electrical signals of the nervous system. Initially, sound energy is converted to mechanical energy via amplification processes in the middle ear, followed by transduction of mechanical movements of the oval window into electrochemical signals in the cochlear hair cells, and finally, neural signals travel to the central auditory system, via the auditory division of the 8th cranial nerve. The majority of people above 60 years have some form of age-related hearing loss, also known as presbycusis. However, the biological mechanisms of presbycusis are complex and not yet fully delineated. In the present article, we highlight ion channels and transport proteins, which are integral for the proper functioning of the auditory system, facilitating the diffusion of various ions across auditory structures for signal transduction and processing. Like most other physiological systems, hearing abilities decline with age, hence, it is imperative to fully understand inner ear aging changes, so ion channel functions should be further investigated in the aging cochlea. In this review article, we discuss key various ion channels in the auditory system and how their functions change with age. Understanding the roles of ion channels in auditory processing could enhance the development of potential biotherapies for age-related hearing loss.
听觉系统是一个令人着迷的感觉器官,总体上,它将声音信号转换为神经系统的电信号。最初,声音能量通过中耳的放大过程转换为机械能,然后将卵圆窗的机械运动转换为耳蜗毛细胞中的电化学信号,最后,神经信号通过第 8 颅神经的听觉分支传递到中枢听觉系统。大多数 60 岁以上的人都有某种形式的与年龄相关的听力损失,也称为老年性聋。然而,老年性聋的生物学机制很复杂,尚未完全阐明。在本文中,我们重点介绍离子通道和转运蛋白,它们是听觉系统正常功能所必需的,促进各种离子在听觉结构中的扩散,以进行信号转导和处理。与大多数其他生理系统一样,听力能力随年龄增长而下降,因此,充分了解内耳衰老变化至关重要,因此应进一步研究衰老耳蜗中的离子通道功能。在这篇综述文章中,我们讨论了听觉系统中的各种关键离子通道,以及它们的功能随年龄的变化。了解离子通道在听觉处理中的作用可以增强针对与年龄相关的听力损失的潜在生物疗法的开发。