1 Department of Biomedical Sciences, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong.
2 Department of Nano-Bioengineering, Incheon National University, Incheon, South Korea.
Neuroscientist. 2018 Aug;24(4):353-367. doi: 10.1177/1073858417733415. Epub 2017 Oct 9.
Chronic tinnitus, the perception of lifelong constant ringing in ear, is one capital cause of disability in modern society. It is often present with various comorbid factors that severely affect quality of life, including insomnia, deficits in attention, anxiety, and depression. Currently, there are limited therapeutic treatments for alleviation of tinnitus. Tinnitus can involve a shift in neuronal excitation/inhibition (E/I) balance, which is largely modulated by ion channels and receptors. Thus, ongoing research is geared toward pharmaceutical approaches that modulate the function of ion channels and receptors. Here, we propose a seesaw model that delineates how tinnitus-related ion channels and receptors are involved in homeostatic E/I balance of neurons. This review provides a thorough account of our current mechanistic understanding of tinnitus and insight into future direction of drug development.
慢性耳鸣,即长期持续于耳中的鸣响感知,是现代社会导致残疾的主要原因之一。它常伴有各种严重影响生活质量的合并症,包括失眠、注意力缺陷、焦虑和抑郁。目前,缓解耳鸣的治疗方法有限。耳鸣可能涉及神经元兴奋/抑制(E/I)平衡的转变,而这种平衡主要受离子通道和受体调节。因此,目前的研究侧重于调节离子通道和受体功能的药物方法。在这里,我们提出了一个跷跷板模型,阐述了与耳鸣相关的离子通道和受体如何参与神经元的稳态 E/I 平衡。这篇综述全面阐述了我们目前对耳鸣的机制理解,并为药物开发的未来方向提供了新的见解。