Fractalkine receptor deficiency impairs microglial and neuronal responsiveness to chronic stress

CX3CR1型 小胶质细胞 CX3CL1型 神经科学 慢性应激 基因剔除小鼠 海马体 海马结构 生物 趋化因子 趋化因子受体 受体 心理学 炎症 免疫学 医学 内科学
作者
Giampaolo Milior,Cynthia Lecours,Louis Samson,Kanchan Bisht,S. Poggini,Francesca Pagani,Cristina Deflorio,Clotilde Lauro,Silvia Alboni,Cristina Limatola,Igor Branchi,Marie‐Ève Tremblay,Laura Maggi
出处
期刊:Brain Behavior and Immunity [Elsevier]
卷期号:55: 114-125 被引量:176
标识
DOI:10.1016/j.bbi.2015.07.024
摘要

Chronic stress is one of the most relevant triggering factors for major depression. Microglial cells are highly sensitive to stress and, more generally, to environmental challenges. However, the role of these brain immune cells in mediating the effects of stress is still unclear. Fractalkine signaling - which comprises the chemokine CX3CL1, mainly expressed by neurons, and its receptor CX3CR1, almost exclusively present on microglia in the healthy brain - has been reported to critically regulate microglial activity. Here, we investigated whether interfering with microglial function by deleting the Cx3cr1 gene affects the brain's response to chronic stress. To this purpose, we housed Cx3cr1 knockout and wild-type adult mice in either control or stressful environments for 2weeks, and investigated the consequences on microglial phenotype and interactions with synapses, synaptic transmission, behavioral response and corticosterone levels. Our results show that hampering neuron-microglia communication via the CX3CR1-CX3CL1 pathway prevents the effects of chronic unpredictable stress on microglial function, short- and long-term neuronal plasticity and depressive-like behavior. Overall, the present findings suggest that microglia-regulated mechanisms may underlie the differential susceptibility to stress and consequently the vulnerability to diseases triggered by the experience of stressful events, such as major depression.

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