Multiomics implicate gut microbiota in altered lipid and energy metabolism in Parkinson’s disease

Abstract We aimed to investigate the link between serum metabolites, gut bacterial community composition, and clinical variables in Parkinson’s disease (PD) and healthy control subjects (HC). A total of 124 subjects were part of the study (63 PD patients and 61 HC subjects). 139 metabolite features...

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Main Authors: Pedro A. B. Pereira, Drupad K. Trivedi, Justin Silverman, Ilhan Cem Duru, Lars Paulin, Petri Auvinen, Filip Scheperjans
Format: Article
Language:English
Published: Nature Portfolio 2022-04-01
Series:npj Parkinson's Disease
Online Access:https://doi.org/10.1038/s41531-022-00300-3
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author Pedro A. B. Pereira
Drupad K. Trivedi
Justin Silverman
Ilhan Cem Duru
Lars Paulin
Petri Auvinen
Filip Scheperjans
author_facet Pedro A. B. Pereira
Drupad K. Trivedi
Justin Silverman
Ilhan Cem Duru
Lars Paulin
Petri Auvinen
Filip Scheperjans
author_sort Pedro A. B. Pereira
collection DOAJ
description Abstract We aimed to investigate the link between serum metabolites, gut bacterial community composition, and clinical variables in Parkinson’s disease (PD) and healthy control subjects (HC). A total of 124 subjects were part of the study (63 PD patients and 61 HC subjects). 139 metabolite features were found to be predictive between the PD and Control groups. No associations were found between metabolite features and within-PD clinical variables. The results suggest alterations in serum metabolite profiles in PD, and the results of correlation analysis between metabolite features and microbiota suggest that several bacterial taxa are associated with altered lipid and energy metabolism in PD.
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spelling doaj.art-f140344979fd47ddbf19c1cd4cbae81c2023-11-02T08:30:15ZengNature Portfolionpj Parkinson's Disease2373-80572022-04-018111710.1038/s41531-022-00300-3Multiomics implicate gut microbiota in altered lipid and energy metabolism in Parkinson’s diseasePedro A. B. Pereira0Drupad K. Trivedi1Justin Silverman2Ilhan Cem Duru3Lars Paulin4Petri Auvinen5Filip Scheperjans6Department of Neurology, Helsinki University Hospital, and Clinicum, University of HelsinkiManchester Institute of Biotechnology, The University of ManchesterCollege of Information Science and Technology, Department of Statistics, and Institute for Computational and Data Science, Penn State UniversityInstitute of Biotechnology, DNA Sequencing and Genomics Laboratory, University of HelsinkiInstitute of Biotechnology, DNA Sequencing and Genomics Laboratory, University of HelsinkiInstitute of Biotechnology, DNA Sequencing and Genomics Laboratory, University of HelsinkiDepartment of Neurology, Helsinki University Hospital, and Clinicum, University of HelsinkiAbstract We aimed to investigate the link between serum metabolites, gut bacterial community composition, and clinical variables in Parkinson’s disease (PD) and healthy control subjects (HC). A total of 124 subjects were part of the study (63 PD patients and 61 HC subjects). 139 metabolite features were found to be predictive between the PD and Control groups. No associations were found between metabolite features and within-PD clinical variables. The results suggest alterations in serum metabolite profiles in PD, and the results of correlation analysis between metabolite features and microbiota suggest that several bacterial taxa are associated with altered lipid and energy metabolism in PD.https://doi.org/10.1038/s41531-022-00300-3
spellingShingle Pedro A. B. Pereira
Drupad K. Trivedi
Justin Silverman
Ilhan Cem Duru
Lars Paulin
Petri Auvinen
Filip Scheperjans
Multiomics implicate gut microbiota in altered lipid and energy metabolism in Parkinson’s disease
npj Parkinson's Disease
title Multiomics implicate gut microbiota in altered lipid and energy metabolism in Parkinson’s disease
title_full Multiomics implicate gut microbiota in altered lipid and energy metabolism in Parkinson’s disease
title_fullStr Multiomics implicate gut microbiota in altered lipid and energy metabolism in Parkinson’s disease
title_full_unstemmed Multiomics implicate gut microbiota in altered lipid and energy metabolism in Parkinson’s disease
title_short Multiomics implicate gut microbiota in altered lipid and energy metabolism in Parkinson’s disease
title_sort multiomics implicate gut microbiota in altered lipid and energy metabolism in parkinson s disease
url https://doi.org/10.1038/s41531-022-00300-3
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