1)首都医科大学宣武医院神经外科,中国国际神经科学研究所,北京 100053;2)北京体育大学运动人体科学学院,国家体育总局运动应激适应重点实验室,北京 100084;3)北京体育大学中国排球运动学院,北京 100084
国家自然科学基金(32100821)和中央高校基本科研业务经费专项(2021QN030)资助项目。
1)Department of Neurosurgery, Xuanwu Hospital, China International Neuroscience Institute, Capital Medical University, Beijing 100053, China;2)School of Sport Science, Laboratory of Sports Stress and Adaptation of General Administration of Sport, Beijing Sport University, Beijing 100084, China;3)China Volleyball College, Beijing Sport University, Beijing 100084, China
This work was supported by grants from The National Natural Science Foundation of China (32100821) and the Fundamental Research Funds for the Central Universities (2021QN030).
目的 探讨下丘脑室旁核(paraventricular nucleus,PVN)促肾上腺皮质激素释放素(corticotropin releasing hormone,CRH)神经元在慢性束缚压力应激(chronic restraint stress,CRS)诱导焦虑样行为中的作用,以及运动干预是否通过PVN CRH神经元缓解慢性束缚压力应激诱导的焦虑样行为。方法 20只8周龄雄性C57BL/6J小鼠,随机分为空白对照(control,Ctrl)组和CRS组,并通过旷场(open field test,OFT)和高架十字迷宫(elevated plus maze test,EPM)范式,评估其焦虑样行为,并对慢性束缚压力应激后的小鼠摄食量进行统计。通过免疫荧光染色的方法观察PVN脑区c-Fos的表达情况,以及与CRH神经元的共标情况。利用化学遗传学激活PVN CRH神经元,检测其焦虑情况。通过8周跑台干预(10~16 m/min,60 min/d,6 d/周),观察其对慢性束缚压力应激诱导的焦虑样行为的改善作用。最后,探讨PVN CRH神经元在运动改善焦虑样行为中的作用机制。结果 与Ctrl组相比,CRS组小鼠出现明显的焦虑样行为,在旷场中间区域的时间减少(P<0.001),在高架十字迷宫的开臂时间减少(P<0.001),并且出现食欲下降的现象(P<0.05);与Ctrl组相比,CRS组小鼠能够促进PVN脑区c-Fos的表达(P<0.001),并且这些c-Fos信号与CRH神经元有大量共标(P<0.001);利用化学遗传学直接激活PVN CRH神经元,小鼠出现焦虑样行为(P<0.05),并且出现抑制摄食的现象;运动干预可以缓解CRS诱导的焦虑样行为(P<0.001),并缓解摄食抑制现象(P<0.05);运动干预可以抑制由CRS诱导的PVN CRH神经元活性增强(P<0.001),并且消融PVN CRH神经元可缓解CRS诱导产生的焦虑样行为。结论 慢性束缚压力应激通过激活PVN CRN神经元,诱导小鼠产生焦虑样行为和食欲下降的现象;8周运动干预可能通过抑制PVN CRH神经元缓解慢性束缚压力应激诱导的焦虑样行为;CRH PVN神经元损毁,慢性束缚压力所诱导的焦虑样行为得到改善。这一研究结果揭示了运动缓解压力诱导的焦虑样行为的潜在神经机制,为治疗焦虑等精神疾病提供了新的思路和理论基础。
Objective To investigate the role of paraventricular nucleus (PVN) corticotropin releasing hormone (CRH) neurons in chronic restraint stress (CRS)-induced anxiety-like behavior. And whether exercise relieves chronic restraint stress-induced anxiety through PVN CRH neurons.Methods Twenty 8-week-old male C57BL/6J mice were randomly divided into control (Ctrl) group and chronic restraint stress (CRS) group. The open field test (OFT) and elevated plus maze (EPM) were used to evaluate anxiety-like behavior of the mice. Food intake was recorded after CRS. Immunofluorescence staining was used to label the expression of c-Fos expression in PVN and calculate the co-expression of c-Fos and CRH neurons. We used chemogenetic activation of PVN CRH neurons to observed the anxiety-like behavior. 8-week treadmill training (10-16 m/min, 60 min/d, 6 d/week) were used to explore the role of exercise in ameliorating CRS-induced anxiety behavior and how PVN CRH neurons involved in it.Results Compared with Ctrl group, CRS group exhibited significant anxiety-like behavior. In OFT, the mice in CRS groups spent less time in center area (P<0.001). In EPM, the time in open arm in CRS group were significantly decreased (P<0.001). Besides, food intake was also suppressed in CRS group compared with Ctrl group (P<0.05). Compared with Ctrl group, CRS significantly increase c-Fos expression in PVN and most of CRH neurons co-express c-Fos (P<0.001). Chemogenetic activation of PVN CRH neurons induced anxiety-like behavior (P<0.05) and inhibited feeding behavior (P<0.01). Exercise relieves chronic restraint stress-induced anxiety (P<0.001) and relieved the anorexia caused by chronic restraint stress (P<0.05). Aerobic exercise inhibited the CRS labeled c-Fos in PVN CRH neurons (P<0.001). Furthermore, ablation of PVN CRH neurons attenuated CRS induced anxiety-like behavior.Conclusion CRS activated PVN CRH neurons, induced anxiety-like behavior and reduced food intake. 8-week exercise attenuated CRS-induced anxiety-like behavior through inhibiting PVN CRH neuron. Ablation of CRH PVN neurons ameliorated CRS-induced anxiety-like behavior. These finding reveals a potential neural mechanism of exercise-relieving CRS-induced anxiety-like behavior. This provides a new idea and theoretical basis for the treatment of anxiety and related mental disorders.
陈静,陈聪聪,张凯娜,赖昱霖,邹杨.运动通过下丘脑室旁核CRH神经元改善慢性束缚压力应激诱导的焦虑样行为[J].生物化学与生物物理进展,2025,52(2):501-512
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