Yang Jianing, Li Li, Xu Yanan, Guan Yuguang, Li Xiaoli
Department of Neurology, Affiliated ZhongDa Hospital, Southeast University, Nanjing, China.
Medical College, Southeast University, Nanjing, China.
Behav Brain Funct. 2025 Aug 31;21(1):27. doi: 10.1186/s12993-025-00294-x.
The TWIK-related K channel (TREK-1), a member of the two-pore domain potassium(K2P) family, is characterized as a "leaky potassium channel" and is integral to the maintenance of the resting membrane potential. As the most abundant cell type in the central nervous system, astrocytes play important roles in the development of epilepsy by regulating the release of glutamate and the function of potassium channels. Previous studies have revealed that TREK-1 is involved in a range of neurological diseases, including epilepsy. In astrocytes, TREK-1 acts as a crucial regulator of the rapid release of glutamate and passive conductance. However, controversy remains about the expression levels of TREK-1-binding receptors in the process of the release and recycling of glutamate in tripartite synapses. Thus, elucidating the pathological mechanisms involving TREK-1 in epilepsy could significantly increase our understanding of the pathophysiological basis of diseases and facilitate the identification of potential targets for novel therapeutic interventions. Here, we review the physiological function of TREK-1 and studies examining the role of TREK-1 in epilepsy, with a particular emphasis on its interactions with glutamate at tripartite synapses. Furthermore, we provide an analysis of the associated molecular mechanisms of this channel and conclude with an outlook on impending studies on TREK-1 as a novel therapeutic target for epilepsy.
TWIK相关钾通道(TREK-1)是双孔域钾(K2P)家族的成员之一,被表征为“渗漏钾通道”,对维持静息膜电位不可或缺。作为中枢神经系统中最丰富的细胞类型,星形胶质细胞通过调节谷氨酸的释放和钾通道的功能,在癫痫的发生发展中发挥重要作用。先前的研究表明,TREK-1参与包括癫痫在内的一系列神经疾病。在星形胶质细胞中,TREK-1是谷氨酸快速释放和被动电导的关键调节因子。然而,在三方突触中谷氨酸释放和再循环过程中,TREK-1结合受体的表达水平仍存在争议。因此,阐明TREK-1在癫痫中的病理机制,可能会显著增进我们对疾病病理生理基础的理解,并有助于识别新型治疗干预的潜在靶点。在此,我们综述了TREK-1的生理功能以及研究TREK-1在癫痫中作用的相关研究,特别强调了其在三方突触中与谷氨酸的相互作用。此外,我们分析了该通道的相关分子机制,并展望了即将开展的关于TREK-1作为癫痫新型治疗靶点的研究。