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The brain-body circuit mediates acute stress–induced antiinflammatory reflex in bacterial cystitis by suppressing ILC2 activation
Yaxiao Liu, Jinhua Wang, Junyang Lin, Dingqi Sun, Kejia Zhu, Tongxiang Diao, Qiang Fu, Qingyu Ren
Yaxiao Liu, Jinhua Wang, Junyang Lin, Dingqi Sun, Kejia Zhu, Tongxiang Diao, Qiang Fu, Qingyu Ren
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Research Article Infectious disease Inflammation

The brain-body circuit mediates acute stress–induced antiinflammatory reflex in bacterial cystitis by suppressing ILC2 activation

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Abstract

Urinary tract infections (UTIs) are one of the most commonly encountered infections in clinical practice, in which psychological stress is a critical pathological contributor to modulate immune function. However, mechanistic pathways linking stress networks in the brain to bladder infection remain poorly understood. In this study, we discovered that acute stress treatment suppressed bladder inflammation in mice with UTIs, and a substantial number of neurons showing overlap between inflammation-associated markers and retrograde labeling were observed in the paraventricular nucleus (PVN) brain region of these mice. Activation of the PVN alleviated uropathogenic Escherichia coli–induced bladder inflammatory response. Moreover, a blocked hypothalamic-pituitary-adrenal axis reversed the antiinflammatory reflex mediated by acute stress, suggesting that glucocorticoids may modulate UTIs through the brain-body circuit. Single-cell RNA-Seq of bladder immune cells revealed that type 2 innate lymphoid (ILC2) cells expressed abundant levels of glucocorticoid receptor. The activation of the PVN effectively inhibited the expression of the pro-inflammatory cytokine colony-stimulating factor 2 by ILC2 cells through direct regulation of cell-intrinsic glucocorticoid signaling. Ultimately, our study has implications for the positioning of the brain-body circuit for UTI treatment.

Authors

Yaxiao Liu, Jinhua Wang, Junyang Lin, Dingqi Sun, Kejia Zhu, Tongxiang Diao, Qiang Fu, Qingyu Ren

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Figure 3

UPEC-induced bladder inflammation upregulates neuronal activity in the PVN.

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UPEC-induced bladder inflammation upregulates neuronal activity in the P...
(A) Schematic diagram illustrating the recording of calcium signals in the PVN. Scale bar, 200 μm. (B) Upper: average calcium signals (ΔF/F in %) synchronized during bladder Inflammation or after saline treatment. Thick lines, mean; shaded areas, SEM. Lower: heatmap of calcium signals in each mouse. (C) The AUC of calcium signal recording in the PVN neurons (n = 6 mice per group). ***P < 0.001 vs. control group. (D) The peak of calcium signal recording in the PVN neurons (n = 6 mice per group). ***P < 0.001 vs. control group. (E) Diagram illustrating the localization of LFP electrode implants in PVN. (F) Upper: representative examples of LFP traces from the PVN in saline or UPEC mice. Lower: heatmap of LFP signals. (G) LFP power in the different frequency bands in the PVN from 4 mice per group. *P < 0.05, ***P < 0.001 vs. control group. Results are presented as mean ± SEM and analyzed by 2-tailed Student’s t tests (C and D) or 2-way ANOVA with Holm-Šidák corrections for multiple comparisons (G).

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