Corticosteroid signaling at the brain-immune interface impedes coping with severe psychological stress.

Kertser, A; Baruch, K; Deczkowska, A; Weiner, A; Croese, T; Kenigsbuch, M; Cooper, I; Tsoory, M et al. · Sci Adv · 2019

basic_science · Level V

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Abstract

The immune system supports brain plasticity and homeostasis, yet it is prone to changes following psychological stress. Thus, it remains unclear whether and how stress-induced immune alterations contribute to the development of mental pathologies. Here, we show that following severe stress in mice, leukocyte trafficking through the choroid plexus (CP), a compartment that mediates physiological immune-brain communication, is impaired. Blocking glucocorticoid receptor signaling, either systemically or locally through its genetic knockdown at the CP, facilitated the recruitment of <i>Gata3-</i> and <i>Foxp3</i>-expressing T cells to the brain and attenuated post-traumatic behavioral deficits. These findings functionally link post-traumatic stress behavior with elevated stress-related corticosteroid signaling at the brain-immune interface and suggest a novel therapeutic target to attenuate the consequences of severe psychological stress.

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