Alterations in the gut microbiota and metabolite profiles in the context of neuropathic pain

Abstract The aim of this study was to explore the relationships among gut microbiota disturbances and serum and spinal cord metabolic disorders in neuropathic pain. 16S rDNA amplicon sequencing and serum and spinal cord metabolomics were used to identify alterations in the microbiota and metabolite...

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Main Authors: Peng Chen, Chen Wang, Yan-na Ren, Zeng-jie Ye, Chao Jiang, Zhi-bing Wu
Format: Article
Language:English
Published: BMC 2021-03-01
Series:Molecular Brain
Subjects:
Online Access:https://doi.org/10.1186/s13041-021-00765-y
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spelling doaj-bca73c432549425cada428eec2e41c1c2021-03-11T12:01:17ZengBMCMolecular Brain1756-66062021-03-0114111810.1186/s13041-021-00765-yAlterations in the gut microbiota and metabolite profiles in the context of neuropathic painPeng Chen0Chen Wang1Yan-na Ren2Zeng-jie Ye3Chao Jiang4Zhi-bing Wu5Basic Medical School, Guizhou University of Traditional Chinese MedicineFirst Clinical Medical School, Guangzhou University of Chinese MedicineBasic Medical School, Guizhou University of Traditional Chinese MedicineFirst Clinical Medical School, Guangzhou University of Chinese MedicineDepartment of Neurology, The Second Affiliated Hospital of Xi’an Medical UniversityFirst Clinical Medical School, Guangzhou University of Chinese MedicineAbstract The aim of this study was to explore the relationships among gut microbiota disturbances and serum and spinal cord metabolic disorders in neuropathic pain. 16S rDNA amplicon sequencing and serum and spinal cord metabolomics were used to identify alterations in the microbiota and metabolite profiles in the sham rats and the chronic constriction injury (CCI) model rats. Correlations between the abundances of gut microbiota components at the genus level, the levels of serum metabolites, and pain-related behavioural parameters were analysed. Ingenuity pathway analysis (IPA) was applied to analyse the interaction networks of the differentially expressed serum metabolites. First, we found that the composition of the gut microbiota was different between rats with CCI-induced neuropathic pain and sham controls. At the genus level, the abundances of Helicobacter, Phascolarctobacterium, Christensenella, Blautia, Streptococcus, Rothia and Lactobacillus were significantly increased, whereas the abundances of Ignatzschineria, Butyricimonas, Escherichia, AF12, and Corynebacterium were significantly decreased. Additionally, 72 significantly differentially expressed serum metabolites and 17 significantly differentially expressed spinal cord metabolites were identified between the CCI rats and the sham rats. Finally, correlation analysis showed that changes in the gut microbiota was significantly correlated with changes in serum metabolite levels, suggesting that dysbiosis of the gut microbiota is an important factor in modulating metabolic disturbances in the context of neuropathic pain. In conclusion, our research provides a novel perspective on the potential roles of the gut microbiota and related metabolites in neuropathic pain.https://doi.org/10.1186/s13041-021-00765-yNeuropathic painGut microbiotaMetabolite profilesCCI model
collection DOAJ
language English
format Article
sources DOAJ
author Peng Chen
Chen Wang
Yan-na Ren
Zeng-jie Ye
Chao Jiang
Zhi-bing Wu
spellingShingle Peng Chen
Chen Wang
Yan-na Ren
Zeng-jie Ye
Chao Jiang
Zhi-bing Wu
Alterations in the gut microbiota and metabolite profiles in the context of neuropathic pain
Molecular Brain
Neuropathic pain
Gut microbiota
Metabolite profiles
CCI model
author_facet Peng Chen
Chen Wang
Yan-na Ren
Zeng-jie Ye
Chao Jiang
Zhi-bing Wu
author_sort Peng Chen
title Alterations in the gut microbiota and metabolite profiles in the context of neuropathic pain
title_short Alterations in the gut microbiota and metabolite profiles in the context of neuropathic pain
title_full Alterations in the gut microbiota and metabolite profiles in the context of neuropathic pain
title_fullStr Alterations in the gut microbiota and metabolite profiles in the context of neuropathic pain
title_full_unstemmed Alterations in the gut microbiota and metabolite profiles in the context of neuropathic pain
title_sort alterations in the gut microbiota and metabolite profiles in the context of neuropathic pain
publisher BMC
series Molecular Brain
issn 1756-6606
publishDate 2021-03-01
description Abstract The aim of this study was to explore the relationships among gut microbiota disturbances and serum and spinal cord metabolic disorders in neuropathic pain. 16S rDNA amplicon sequencing and serum and spinal cord metabolomics were used to identify alterations in the microbiota and metabolite profiles in the sham rats and the chronic constriction injury (CCI) model rats. Correlations between the abundances of gut microbiota components at the genus level, the levels of serum metabolites, and pain-related behavioural parameters were analysed. Ingenuity pathway analysis (IPA) was applied to analyse the interaction networks of the differentially expressed serum metabolites. First, we found that the composition of the gut microbiota was different between rats with CCI-induced neuropathic pain and sham controls. At the genus level, the abundances of Helicobacter, Phascolarctobacterium, Christensenella, Blautia, Streptococcus, Rothia and Lactobacillus were significantly increased, whereas the abundances of Ignatzschineria, Butyricimonas, Escherichia, AF12, and Corynebacterium were significantly decreased. Additionally, 72 significantly differentially expressed serum metabolites and 17 significantly differentially expressed spinal cord metabolites were identified between the CCI rats and the sham rats. Finally, correlation analysis showed that changes in the gut microbiota was significantly correlated with changes in serum metabolite levels, suggesting that dysbiosis of the gut microbiota is an important factor in modulating metabolic disturbances in the context of neuropathic pain. In conclusion, our research provides a novel perspective on the potential roles of the gut microbiota and related metabolites in neuropathic pain.
topic Neuropathic pain
Gut microbiota
Metabolite profiles
CCI model
url https://doi.org/10.1186/s13041-021-00765-y
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