Department of Biomedical Science, Graduate School, Kyung Hee University, 26 Kyungheedae-ro, Dongdaemun-gu, Seoul 02447, Republic of Korea.
Department of Anatomy and Neurobiology, College of Medicine, Kyung Hee University, 26 Kyungheedae-ro, Dongdaemun-gu, Seoul 02447, Republic of Korea.
Neural Plast. 2018 May 6;2018:1824713. doi: 10.1155/2018/1824713. eCollection 2018.
Synaptic plasticity is important for maintaining normal neuronal activity and proper neuronal functioning in the nervous system. It is crucial for regulating synaptic transmission or electrical signal transduction to neuronal networks, for sharing essential information among neurons, and for maintaining homeostasis in the body. Moreover, changes in synaptic or neural plasticity are associated with many neuropsychiatric conditions, such as schizophrenia (SCZ), bipolar disorder (BP), major depressive disorder (MDD), and Alzheimer's disease (AD). The improper maintenance of neural plasticity causes incorrect neurotransmitter transmission, which can also cause neuropsychiatric conditions. Gas neurotransmitters (gasotransmitters), such as hydrogen sulfide (HS), nitric oxide (NO), and carbon monoxide (CO), play roles in maintaining synaptic plasticity and in helping to restore such plasticity in the neuronal architecture in the central nervous system (CNS). Indeed, the upregulation or downregulation of these gasotransmitters may cause neuropsychiatric conditions, and their amelioration may restore synaptic plasticity and proper neuronal functioning and thereby improve such conditions. Understanding the specific molecular mechanisms underpinning these effects can help identify ways to treat these neuropsychiatric conditions.
突触可塑性对于维持神经系统中正常的神经元活动和适当的神经元功能非常重要。它对于调节神经元网络中的突触传递或电信号转导、在神经元之间共享必要的信息以及维持体内的动态平衡至关重要。此外,突触或神经可塑性的变化与许多神经精神疾病有关,如精神分裂症 (SCZ)、双相情感障碍 (BP)、重度抑郁症 (MDD) 和阿尔茨海默病 (AD)。神经可塑性的不当维持会导致神经递质传递错误,这也可能导致神经精神疾病。气体神经递质(gasotransmitters),如硫化氢 (HS)、一氧化氮 (NO) 和一氧化碳 (CO),在维持突触可塑性以及帮助恢复中枢神经系统 (CNS) 中神经元结构的这种可塑性方面发挥作用。事实上,这些气体神经递质的上调或下调可能会导致神经精神疾病,而它们的改善可能会恢复突触可塑性和适当的神经元功能,从而改善这些疾病。了解这些影响背后的特定分子机制有助于确定治疗这些神经精神疾病的方法。