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微生物组的改变与应激诱导的绝望行为的发展有关。

Microbiota alteration is associated with the development of stress-induced despair behavior.

机构信息

Center for Brain Immunology and Glia, University of Virginia, Charlottesville, VA, 22904, USA.

Department of Neuroscience, University of Virginia, Charlottesville, VA, 22904, USA.

出版信息

Sci Rep. 2017 Mar 7;7:43859. doi: 10.1038/srep43859.


DOI:10.1038/srep43859
PMID:28266612
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5339726/
Abstract

Depressive disorders often run in families, which, in addition to the genetic component, may point to the microbiome as a causative agent. Here, we employed a combination of behavioral, molecular and computational techniques to test the role of the microbiota in mediating despair behavior. In chronically stressed mice displaying despair behavior, we found that the microbiota composition and the metabolic signature dramatically change. Specifically, we observed reduced Lactobacillus and increased circulating kynurenine levels as the most prominent changes in stressed mice. Restoring intestinal Lactobacillus levels was sufficient to improve the metabolic alterations and behavioral abnormalities. Mechanistically, we identified that Lactobacillus-derived reactive oxygen species may suppress host kynurenine metabolism, by inhibiting the expression of the metabolizing enzyme, IDO1, in the intestine. Moreover, maintaining elevated kynurenine levels during Lactobacillus supplementation diminished the treatment benefits. Collectively, our data provide a mechanistic scenario for how a microbiota player (Lactobacillus) may contribute to regulating metabolism and resilience during stress.

摘要

抑郁障碍常家族遗传,除了遗传因素外,肠道微生物群可能也是致病因素。在此,我们采用了行为学、分子生物学和计算生物学相结合的方法,来检测微生物群在介导抑郁样行为中的作用。在表现出抑郁样行为的慢性应激小鼠中,我们发现微生物群组成和代谢特征发生了显著变化。具体而言,我们观察到应激小鼠中乳酸杆菌减少和循环犬尿氨酸水平升高是最显著的变化。恢复肠道乳酸杆菌水平足以改善代谢改变和行为异常。从机制上讲,我们发现乳酸杆菌产生的活性氧可能通过抑制肠道中代谢酶 IDO1 的表达来抑制宿主犬尿氨酸代谢。此外,在补充乳酸杆菌的同时保持升高的犬尿氨酸水平会降低治疗效果。总之,我们的数据为肠道微生物(乳酸杆菌)如何在应激期间调节代谢和韧性提供了一种机制模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9557/5339726/5db1ba4fb3ee/srep43859-f4.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9557/5339726/c2117009c20f/srep43859-f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9557/5339726/9ae9d174be26/srep43859-f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9557/5339726/e957ddb0ce32/srep43859-f3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9557/5339726/5db1ba4fb3ee/srep43859-f4.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9557/5339726/c2117009c20f/srep43859-f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9557/5339726/9ae9d174be26/srep43859-f2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9557/5339726/e957ddb0ce32/srep43859-f3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9557/5339726/5db1ba4fb3ee/srep43859-f4.jpg

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Neurol Int. 2025-8-4

[2]
Lactobacillus reuteri DSM 17,938 ameliorates LPS-induced depression-like and anxiety-like behaviors by modulating gut microbiota and brain metabolic function.

Gut Pathog. 2025-8-21

[3]
Bidirectional crosstalk between the gut microbiota and cellular compartments of brain: Implications for neurodevelopmental and neuropsychiatric disorders.

Transl Psychiatry. 2025-8-13

[4]
T cells fast-track gut signals to the brain.

Nat Immunol. 2025-8-11

[5]
The role of the tryptophan metabolites in gut microbiota-brain axis and potential treatments: a focus on ischemic stroke.

Front Pharmacol. 2025-6-10

[6]
A role for microglia in mediating the microbiota-gut-brain axis.

Nat Rev Immunol. 2025-6-12

[7]
The effects of a semen cuscutae flavonoids-based antidepressant treatment on microbiome and metabolome in mice.

Front Microbiol. 2025-5-15

[8]
Gut microbiota of patients with post-stroke depression in Chinese population: a systematic review and meta-analysis.

Front Cell Infect Microbiol. 2025-5-1

[9]
A Study of Sex Differences in the Biological Pathways of Stress Regulation in Mice.

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[10]
The Gut-Brain Axis in Irritable Bowel Syndrome: Implementing the Role of Microbiota and Neuroimmune Interaction in Personalized Prevention-A Narrative Review.

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本文引用的文献

[1]
Chronic Treatment with the IDO1 Inhibitor 1-Methyl-D-Tryptophan Minimizes the Behavioural and Biochemical Abnormalities Induced by Unpredictable Chronic Mild Stress in Mice - Comparison with Fluoxetine.

PLoS One. 2016-11-9

[2]
Effect of water-immersion restraint stress on tryptophan catabolism through the kynurenine pathway in rat tissues.

J Physiol Sci. 2017-5

[3]
Development and maintenance of intestinal regulatory T cells.

Nat Rev Immunol. 2016-4-18

[4]
Gut microbiome remodeling induces depressive-like behaviors through a pathway mediated by the host's metabolism.

Mol Psychiatry. 2016-4-12

[5]
Gut-Resident Lactobacillus Abundance Associates with IDO1 Inhibition and Th17 Dynamics in SIV-Infected Macaques.

Cell Rep. 2015-11-24

[6]
Variation in Taxonomic Composition of the Fecal Microbiota in an Inbred Mouse Strain across Individuals and Time.

PLoS One. 2015-11-13

[7]
Microbiota and host determinants of behavioural phenotype in maternally separated mice.

Nat Commun. 2015-7-28

[8]
Alterations in the Vaginal Microbiome by Maternal Stress Are Associated With Metabolic Reprogramming of the Offspring Gut and Brain.

Endocrinology. 2015-9

[9]
Subdiaphragmatic vagotomy enhances stress-induced epinephrine release in rats.

Auton Neurosci. 2015-7

[10]
Effects of vendor and genetic background on the composition of the fecal microbiota of inbred mice.

PLoS One. 2015-2-12

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