Department of Psychiatry, Hanyang University Guri Hospital, Guri 11923, Korea.
Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Korea.
Int J Mol Sci. 2021 Oct 29;22(21):11725. doi: 10.3390/ijms222111725.
Depression is characterized by impairments in adult neurogenesis. Reduced hippocampal function, which is suggestive of neurogenesis impairments, is associated with depression-related phenotypes. As adult neurogenesis operates in an activity-dependent manner, disruption of hippocampal neurogenesis in depression may be a consequence of neural circuitry impairments. In particular, the entorhinal cortex is known to have a regulatory effect on the neural circuitry related to hippocampal function and adult neurogenesis. However, a comprehensive understanding of how disruption of the neural circuitry can lead to neurogenesis impairments in depression remains unclear with respect to the regulatory role of the entorhinal cortex. This review highlights recent findings suggesting neural circuitry-regulated neurogenesis, with a focus on the potential role of the entorhinal cortex in hippocampal neurogenesis in depression-related cognitive and emotional phenotypes. Taken together, these findings may provide a better understanding of the entorhinal cortex-regulated hippocampal neurogenesis model of depression.
抑郁症的特征是成年神经发生受损。海马功能降低,提示神经发生受损,与抑郁相关表型有关。由于成年神经发生是一种依赖于活动的过程,因此抑郁症中海马神经发生的破坏可能是神经回路损伤的结果。特别是,已知内嗅皮层对与海马功能和成年神经发生相关的神经回路具有调节作用。然而,关于内嗅皮层的调节作用,对于破坏神经回路如何导致抑郁症中的神经发生受损,人们的理解还不够全面。本综述强调了最近的发现,这些发现表明神经回路调节的神经发生,重点是内嗅皮层在与抑郁相关的认知和情绪表型中的海马神经发生中的潜在作用。总之,这些发现可能为理解内嗅皮层调节的抑郁症中海马神经发生模型提供更好的认识。