Department of Psychiatry, Hanyang University Guri Hospital, Guri 11923, Korea.
Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Korea.
Int J Mol Sci. 2021 Feb 28;22(5):2468. doi: 10.3390/ijms22052468.
Depression is characterized by the disruption of both neural circuitry and neurogenesis. Defects in hippocampal activity and volume, indicative of reduced neurogenesis, are associated with depression-related behaviors in both humans and animals. Neurogenesis in adulthood is considered an activity-dependent process; therefore, hippocampal neurogenesis defects in depression can be a result of defective neural circuitry activity. However, the mechanistic understanding of how defective neural circuitry can induce neurogenesis defects in depression remains unclear. This review highlights the current findings supporting the neural circuitry-regulated neurogenesis, especially focusing on hippocampal neurogenesis regulated by the entorhinal cortex, with regard to memory, pattern separation, and mood. Taken together, these findings may pave the way for future progress in neural circuitry-neurogenesis coupling studies of depression.
抑郁症的特征是神经回路和神经发生的中断。海马体活动和体积的缺陷,表明神经发生减少,与人类和动物的抑郁相关行为有关。成年期的神经发生被认为是一种活动依赖性过程;因此,抑郁症中海马体神经发生的缺陷可能是由于神经回路活动的缺陷所致。然而,关于有缺陷的神经回路如何能导致抑郁症中的神经发生缺陷的机制理解尚不清楚。本综述强调了支持神经回路调节神经发生的当前发现,特别是侧重于由内嗅皮层调节的海马体神经发生,涉及记忆、模式分离和情绪。总之,这些发现可能为抑郁症的神经回路-神经发生耦合研究的未来进展铺平道路。