广州医药 ›› 2025, Vol. 56 ›› Issue (6): 723-734.DOI: 10.20223/j.cnki.1000-8535.2025.06.001

• 专家述评 •    下一篇

焦虑症与抑制性神经元功能:小清蛋白神经元的作用

华丽博, 方长荣, 陈俊良, 赵铮, 刘勇, 黄浪   

  1. 华南理工大学附属第二医院(广州市第一人民医院)神经免疫与健康实验室(广东广州 510180)
  • 收稿日期:2024-09-23 发布日期:2025-07-23
  • 通讯作者: 黄浪,E-mail:huang_lang@foxmail.com;刘勇,E-mail:liuy6@foxmail.com
  • 基金资助:
    国家自然科学基金(82071188,32300840); 科技创新2030(2022ZD0214300); 广州市科技计划项目(2024A04J4004); 作者简介:黄浪 博士,华南理工大学附属第二医院(广州市第一人民医院)特聘副研究员; 华南理工大学基础医学硕士生导师,广州医科大学基础医学硕士生导师; 主要研究方向:神经、精神疾病发病机制,利用神经电生理、双光子在体成像、光遗传学操作、光纤记录、高效液相色谱等方法,从分子、细胞、脑区、环路水平,多维度解析神经、精神疾病的发病机制,探寻潜在干预靶标; 近年在精神疾病领域发表高水平研究型论文多篇; 主持和参与多项国家级项目,目前承担国家科技部科技创新2030-“脑科学与类脑研究”重大项目青年项目、国家自然科学基金等; 参编教育部新兴领域“十四五”高等教育教材《蛋白质工程》

The role of parvalbumin positive inhibitory neurons in anxiety disorders

HUA Libo, FANG Changrong, CHEN Junliang, ZHAO Zheng, LIU Yong, HUANG Lang   

  1. Laboratory for Neuroimmunology in Health and Diseases,the Second Affiliated Hospital of South China University of Technology,Guangzhou First People's Hospital,Guangzhou 510180,China
  • Received:2024-09-23 Published:2025-07-23

摘要: 焦虑症是最常见的精神障碍,区别于生理性焦虑,患者常表现出持续的焦虑状态。越来越多证据表明,抑制性神经元参与生理性焦虑的产生和消退,而这类神经元功能异常与焦虑症的发生密切相关。小清蛋白(PV)神经元是一类主要的抑制性中间神经元,广泛分布于大脑皮质和其他脑区,并且具有独特形态和功能。PV神经元可通过快速放电活动精确控制局部微环路和大脑网络活动,进而调控焦虑发生。文章综述PV神经元如何介导生理性焦虑及其功能异常及如何导致焦虑症的产生,重点介绍了PV神经元的解剖和功能特性,这些特性使它们拥有快速和强力的抑制作用,能够快速调控神经网络活动,和PV神经元以及相关的神经环路调控焦虑发生的环路机制,以及PV神经元调控焦虑发生的分子机制,并展望未来的研究方向,以期为开发新的焦虑症干预策略提供科学依据。

关键词: 小清蛋白神经元, 抑制性神经元, 焦虑症

Abstract: Anxiety disorders,distinct from physiological anxiety,are characterized by a chronic and pervasive state of heightened anxiety and represent the most common mental diseases.Emerging evidence implicates inhibitory neurons in both the generation and extinction of physiological anxiety,with dysfunction in these neurons strongly associated with the pathogenesis of anxiety disorders.Among inhibitory neurons,parvalbumin(PV)-positive interneuron,a key subset with unique morphological and functional characteristics,are widely distributed across the cerebral cortex and various brain regions.These neurons exert rapid,potent inhibitory control over local microcircuits and broader neural networks through their fast-spiking activity,making them integral to the regulation of anxiety-related behaviors.This review highlights three key aspects:the anatomical and functional properties of PV neurons;their role in circuit mechanisms;the molecular pathways by which PV neurons regulate anxiety.By elucidating the role of PV neurons in modulating physiological anxiety and highlighting their dysfunction in anxiety disorders,this review aims to inform future research and foster the development of novel therapeutic interventions for anxiety disorders.

Key words: parvalbumin neurons, inhibitory neurons, anxiety disorders