Cognitive impairment by antibiotic-induced gut dysbiosis: Analysis of gut microbiota-brain communication

被引:457
|
作者
Froehlich, Esther E. [1 ]
Farzi, Aitak [1 ]
Mayerhofer, Raphaela [1 ]
Reichmann, Florian [1 ]
Jacan, Angela [1 ]
Wagner, Bernhard [2 ]
Zinser, Erwin [2 ]
Bordag, Natalie [3 ]
Magnes, Christoph
Froehlich, Eleonore [4 ]
Kashofer, Karl [5 ]
Gorkiewicz, Gregor [5 ,6 ]
Holzer, Peter [1 ]
机构
[1] Med Univ Graz, Res Unit Translat Neurogastroenterol, Inst Expt & Clin Pharmacol, Univ Pl 4, A-8010 Graz, Austria
[2] FH JOANNEUM Univ Appl Sci, Inst Biomed Sci, Eggenberger Allee 13, A-8020 Graz, Austria
[3] CBmed GmbH, Ctr Biomarker Res Med, Stiftingtalstr 5, A-8010 Graz, Austria
[4] Med Univ Graz, Med Res Ctr, Core Facil Microscopy, Stiftingtalstr 24-1, A-8010 Graz, Austria
[5] Med Univ Graz, Inst Pathol, Auenbruggerpl 25, A-8036 Graz, Austria
[6] BioTechMed Graz, Krenngasse 37-1, A-8010 Graz, Austria
基金
奥地利科学基金会;
关键词
Cognition; Microbiome; Metabolome; Antibiotic; Brain; Gut; Dysbiosis; Serotonin transporter; Neuropeptide Y; GRIN2B; NEUROPEPTIDE-Y; NEUROTROPHIC FACTOR; INTESTINAL MICROBIOTA; MASS-SPECTROMETRY; MESSENGER-RNA; ANXIETY-LIKE; MEMORY; EXPRESSION; RECEPTOR; BEHAVIOR;
D O I
10.1016/j.bbi.2016.02.020
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Emerging evidence indicates that disruption of the gut microbial community (dysbiosis) impairs mental health. Germ-free mice and antibiotic-induced gut dysbiosis are two approaches to establish causality in gut microbiota-brain relationships. However, both models have limitations, as germ-free mice display alterations in blood-brain barrier and brain ultrastructure and antibiotics may act directly on the brain. We hypothesized that the concerns related to antibiotic-induced gut dysbiosis can only adequately be addressed if the effect of intragastric treatment of adult mice with multiple antibiotics on (i) gut microbial community, (ii) metabolite profile in the colon, (iii) circulating metabolites, (iv) expression of neuronal signaling molecules in distinct brain areas and (v) cognitive behavior is systematically investigated. Of the antibiotics used (ampicillin, bacitracin, meropenem, neomycin, vancomycin), ampicillin had some oral bioavailability but did not enter the brain. 16S rDNA sequencing confirmed antibiotic-induced microbial community disruption, and metabolomics revealed that gut dysbiosis was associated with depletion of bacteria-derived metabolites in the colon and alterations of lipid species and converted microbe-derived molecules in the plasma. Importantly, novel object recognition, but not spatial, memory was impaired in antibiotic-treated mice. This cognitive deficit was associated with brain region-specific changes in the expression of cognition-relevant signaling molecules, notably brain derived neurotrophic factor, N-methyl-D-aspartate receptor subunit 2B, serotonin transporter and neuropeptide Y system. We conclude that circulating metabolites and the cerebral neuropeptide Y system play an important role in the cognitive impairment and dysregulation of cerebral signaling molecules due to antibiotic-induced gut dysbiosis. (C) 2016 The Authors. Published by Elsevier Inc. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
引用
收藏
页码:140 / 155
页数:16
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