Han Haijun, Yao Jianhua, Wu Jinhan, Mao Shiqi, Pan Hongyi, Qv Lingling, Zhu Guanqi, Ren Juntian, Yu Yaning, Xuan Feiyang, Zeng Linghui, Ma Yunlong, Yang Zhongli, Zhu Zhijing, Zhu Feng, Li Ming D
Key Laboratory of Novel Targets and Drug Study for Neural Repair of Zhejiang Province, Institute of Brain and Cognitive Science, School of Medicine, Hangzhou City University, Hangzhou, China.
Joint Institute of Tobacco and Health, Kunming, Yunnan, China.
Mol Psychiatry. 2025 May 9. doi: 10.1038/s41380-025-03044-7.
Major Depressive Disorder (MDD) is a prevalent psychiatric disorder with a profound impact on global health, necessitating a deeper understanding of its pathophysiology. This review synthesizes current evidence linking neurogenesis, particularly in the hippocampal region, with MDD. Accumulating data showed a significant reduction of neurogenesis in the hippocampal region of both MDD patients and various MDD rodent models. We highlight the role of brain-derived neurotrophic factor (BDNF) and its associated signaling pathways in regulating neurogenesis and depressive symptoms. Additionally, the influence of gut microbiota on the neurogenesis in depression is presented, offering a novel perspective on environmental modulation of neurogenesis. This review also underscores the potential antidepressant interventions targeting neurogenesis and BDNF's regulation, such as therapeutic benefits of environmental enrichment, physical activity, and pharmacological agents in enhancing neurogenesis and alleviating depressive symptoms. Together, this systemic review provides a foundation for future research aiming at developing personalized treatments by targeting neurogenesis in MDD, potentially leading to novel biomarkers and therapeutic strategies.
重度抑郁症(MDD)是一种常见的精神疾病,对全球健康产生深远影响,因此有必要更深入地了解其病理生理学。本综述综合了目前将神经发生,特别是海马区的神经发生与MDD联系起来的证据。越来越多的数据表明,MDD患者和各种MDD啮齿动物模型的海马区神经发生均显著减少。我们强调脑源性神经营养因子(BDNF)及其相关信号通路在调节神经发生和抑郁症状中的作用。此外,还介绍了肠道微生物群对抑郁症神经发生的影响,为神经发生的环境调节提供了新的视角。本综述还强调了针对神经发生和BDNF调节的潜在抗抑郁干预措施,例如环境富集、体育活动和药物制剂在增强神经发生和缓解抑郁症状方面的治疗益处。总之,这项系统综述为未来旨在通过针对MDD中的神经发生开发个性化治疗方法的研究提供了基础,这可能会带来新的生物标志物和治疗策略。