Orexin prevents depressive-like behavior by promoting stress resilience

增食欲素 心理学 外侧下丘脑 行为绝望测验 食欲素受体 内分泌学 神经肽 内科学 神经科学 下丘脑 嗜睡症 受体 医学 海马体 抗抑郁药 神经学
作者
Miao‐Jin Ji,Xiaoyang Zhang,Zi Chen,Jianjun Wang,Jing‐Ning Zhu
出处
期刊:Molecular Psychiatry [Springer Nature]
卷期号:24 (2): 282-293 被引量:81
标识
DOI:10.1038/s41380-018-0127-0
摘要

Hypothalamic neuropeptide orexin has been implicated in the pathophysiology of psychiatric disorders and accumulating clinical evidence indicates a potential link between orexin and depression. However, the exact role of orexin in depression, particularly the underlying neural substrates and mechanisms, remains unknown. In this study, we reveal a direct projection from the hypothalamic orexinergic neurons to the ventral pallidum (VP), a structure that receives an increasing attention for its critical position in rewarding processing, stress responses, and depression. We find that orexin directly excites GABAergic VP neurons and prevents depressive-like behaviors in rats. Two orexin receptors, OX1R and OX2R, and their downstream Na+–Ca2+ exchanger and L-type Ca2+ channel co-mediate the effect of orexin. Furthermore, pharmacological blockade or genetic knockdown of orexin receptors in VP increases depressive-like behaviors in forced swim test and sucrose preference test. Intriguingly, blockage of orexinergic inputs in VP has no impact on social proximity in social interaction test between novel partners, but remarkably strengthens social avoidance under an acute psychosocial stress triggered by social rank. Notably, a significantly increased orexin level in VP is accompanied by an increase in serum corticosterone in animals exposed to acute stresses, including forced swimming, food/water deprivation and social rank stress, rather than non-stress situations. These results suggest that endogenous orexinergic modulation on VP is especially critical for protecting against depressive reactions to stressful events. The findings define an indispensable role for the central orexinergic system in preventing depression by promoting stress resilience.
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