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Updated: Oct 11, 2025

Author Spotlight: Exploring Non-Motor Symptoms in Parkinson's Disease
Published on: September 22, 2023
Gut microbiome in Parkinson's disease: New insights from meta-analysis
Tzi Shin Toh1, Chun Wie Chong2, Shen-Yang Lim1
1Division of Neurology, Department of Medicine, Faculty of Medicine, University of Malaya, Kuala Lumpur, Malaysia; Mah Pooi Soo & Tan Chin Nam Centre for Parkinson's & Related Disorders, Faculty of Medicine, University of Malaya, Kuala Lumpur, Malaysia.
Background:
Gut microbiome alterations have been reported in Parkinson's disease (PD), but with heterogenous findings, likely due to differences in study methodology and population. We investigated the main microbiome alterations in PD, their correlations with disease severity, and the impact of study and geographical differences.
Methods:
After systematic screening, raw 16S rRNA gene sequences were obtained from ten case-control studies totaling 1703 subjects (969 PD, 734 non-PD controls; seven predominantly Caucasian and three predominantly non-Caucasian cohorts). Quality-filtered gene sequences were analyzed using a phylogenetic placement approach, which precludes the need for the sequences to be sourced from similar regions in the 16S rRNA gene, thus allowing a direct comparison between studies. Differences in microbiome composition and correlations with clinical variables were analyzed using multivariate statistics.
Results:
Study and geography accounted for the largest variations in gut microbiome composition. Microbiome composition was more similar for subjects from the same study than those from different studies with the same disease status. Microbiome composition significantly differed between Caucasian and non-Caucasian populations. After accounting for study differences, microbiome composition was significantly different in PD vs. controls (albeit with a marginal effect size), with several distinctive features including increased abundances of Megasphaera and Akkermansia, and reduced Roseburia. Several bacterial genera correlated with PD motor severity, motor response complications and cognitive function.
Conclusion:
Consistent microbial features in PD merit further investigation. The large variations in microbiome findings of PD patients underscore the need for greater harmonization of future research, and personalized approaches in designing microbial-directed therapeutics.
Insights
Gut microbiome changes are present in Parkinson's disease (PD), but vary significantly across studies and populations. Harmonizing research and personalizing treatments are crucial for future microbiome-directed therapies in PD.
Area of Science:
- Microbiome research
- Neurodegenerative diseases
- Genetics and genomics
Background:
- Gut microbiome alterations are increasingly linked to Parkinson's disease (PD).
- Previous findings on PD-associated microbiome changes are inconsistent, likely due to methodological and population variations.
- This study aimed to identify consistent microbiome alterations in PD and their relationship with disease characteristics.
Purpose of the Study:
- To investigate the main gut microbiome alterations in Parkinson's disease (PD).
- To correlate these alterations with PD severity and clinical variables.
- To assess the impact of study methodology and geographical differences on microbiome findings.
Main Methods:
- Systematic screening of ten case-control studies (1703 subjects: 969 PD, 734 controls).
- Analysis of 16S rRNA gene sequences using a phylogenetic placement approach for cross-study comparability.
- Multivariate statistics to analyze microbiome composition differences and correlations with clinical data.
Main Results:
- Study and geographical factors significantly influenced gut microbiome composition.
- Microbiome composition differed between Caucasian and non-Caucasian populations.
- Distinctive PD-associated microbiome features included increased Megasphaera and Akkermansia, and reduced Roseburia, with correlations to motor severity, complications, and cognitive function.
Conclusions:
- Consistent microbial signatures in PD warrant further investigation.
- Significant variations in microbiome findings highlight the need for standardized research methodologies.
- Personalized approaches are essential for developing effective microbial-directed therapeutics for Parkinson's disease.
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