Stress-sensitive neural circuits change the gut microbiome via duodenal glands

IF 45.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Cell Pub Date : 2024-08-08 DOI:10.1016/j.cell.2024.07.019
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Abstract

Negative psychological states impact immunity by altering the gut microbiome. However, the relationship between brain states and microbiome composition remains unclear. We show that Brunner’s glands in the duodenum couple stress-sensitive brain circuits to bacterial homeostasis. Brunner’s glands mediated the enrichment of gut Lactobacillus species in response to vagus nerve stimulation. Cell-specific ablation of the glands markedly suppressed Lactobacilli counts and heightened vulnerability to infection. In the forebrain, we mapped a vagally mediated, polysynaptic circuit connecting the central nucleus of the amygdala to Brunner’s glands. Chronic stress suppressed central amygdala activity and phenocopied the effects of gland lesions. Conversely, excitation of either the central amygdala or parasympathetic vagal neurons activated Brunner’s glands and reversed the effects of stress on the gut microbiome and immunity. The findings revealed a tractable brain-body mechanism linking psychological states to host defense.

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对压力敏感的神经回路通过十二指肠腺改变肠道微生物群
负面心理状态会通过改变肠道微生物组来影响免疫力。然而,大脑状态与微生物组组成之间的关系仍不清楚。我们的研究表明,十二指肠中的布鲁纳氏腺将对压力敏感的大脑回路与细菌平衡联系起来。在迷走神经刺激下,布鲁纳氏腺介导了肠道乳酸杆菌的富集。对该腺体进行细胞特异性消融会明显抑制乳酸杆菌的数量,并增加对感染的脆弱性。在前脑中,我们绘制了一个由迷走神经介导的多突触回路,该回路将杏仁核中央核与布鲁纳腺体连接起来。慢性应激抑制了杏仁核中枢的活动,并表征了腺体病变的影响。相反,杏仁核中枢或副交感迷走神经元的兴奋会激活布鲁纳腺,并逆转压力对肠道微生物组和免疫的影响。这些发现揭示了一种将心理状态与宿主防御联系起来的可控的脑-体机制。
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来源期刊
Cell
Cell 生物-生化与分子生物学
CiteScore
110.00
自引率
0.80%
发文量
396
审稿时长
2 months
期刊介绍: Cells is an international, peer-reviewed, open access journal that focuses on cell biology, molecular biology, and biophysics. It is affiliated with several societies, including the Spanish Society for Biochemistry and Molecular Biology (SEBBM), Nordic Autophagy Society (NAS), Spanish Society of Hematology and Hemotherapy (SEHH), and Society for Regenerative Medicine (Russian Federation) (RPO). The journal publishes research findings of significant importance in various areas of experimental biology, such as cell biology, molecular biology, neuroscience, immunology, virology, microbiology, cancer, human genetics, systems biology, signaling, and disease mechanisms and therapeutics. The primary criterion for considering papers is whether the results contribute to significant conceptual advances or raise thought-provoking questions and hypotheses related to interesting and important biological inquiries. In addition to primary research articles presented in four formats, Cells also features review and opinion articles in its "leading edge" section, discussing recent research advancements and topics of interest to its wide readership.
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