School of Basic Medicine, Health Science Center, Yangtze University, Jingzhou, Hubei Province, 434023, China.
School of Basic Medicine, Health Science Center, Yangtze University, Jingzhou, Hubei Province, 434023, China.
Seizure. 2021 Jan;84:122-128. doi: 10.1016/j.seizure.2020.11.022. Epub 2020 Dec 8.
The astroglial network connected through gap junctions assembling from connexins physiologically balances the concentrations of ions and neurotransmitters around neurons. Astrocytic dysfunction has been associated with many neurological disorders including epilepsy. Dissociated gap junctions result in the increased activity of connexin hemichannels which triggers brain pathophysiological changes. Previous studies in patients and animal models of epilepsy indicate that the reduced gap junction coupling from assembled connexin hemichannels in the astrocytes may play an important role in epileptogenesis. This abnormal cell-to-cell communication is now emerging as an important feature of brain pathologies and being considered as a novel therapeutic target for controlling epileptogenesis. In particular, candidate drugs with ability of inhibition of connexin hemichannel activity and enhancement of gap junction formation in astrocytes should be explored to prevent epileptogenesis and control epilepsy.
通过连接蛋白组装形成的缝隙连接连接的星形胶质细胞网络,在生理上使神经元周围的离子和神经递质浓度保持平衡。星形胶质细胞功能障碍与许多神经疾病有关,包括癫痫。分离的缝隙连接导致连接蛋白半通道的活性增加,从而引发大脑的病理生理变化。癫痫患者和动物模型的先前研究表明,星形胶质细胞中组装的连接蛋白半通道的缝隙连接偶联减少可能在癫痫发生中起重要作用。这种异常的细胞间通讯现在正成为脑病理学的一个重要特征,并被认为是控制癫痫发生的一个新的治疗靶点。特别是,应该探索具有抑制连接蛋白半通道活性和增强星形胶质细胞缝隙连接形成能力的候选药物,以预防癫痫发生和控制癫痫。