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Author Spotlight: Exploring Non-Motor Symptoms in Parkinson's Disease
Published on: September 22, 2023
Deep nasal sinus cavity microbiota dysbiosis in Parkinson's disease
Gian Pal1, Vivian Ramirez2, Phillip A Engen2
1Department of Neurology, Rush University Medical Center, Chicago, IL, USA.
Abstract:
Olfactory dysfunction is a pre-motor symptom of Parkinson's disease (PD) that appears years prior to diagnosis and can affect quality of life in PD. Changes in microbiota community in deep nasal cavity near the olfactory bulb may trigger the olfactory bulb-mediated neuroinflammatory cascade and eventual dopamine loss in PD. To determine if the deep nasal cavity microbiota of PD is significantly altered in comparison to healthy controls, we characterized the microbiota of the deep nasal cavity using 16S rRNA gene amplicon sequencing in PD subjects and compared it to that of spousal and non-spousal healthy controls. Correlations between microbial taxa and PD symptom severity were also explored. Olfactory microbial communities of PD individuals were more similar to those of their spousal controls than to non-household controls. In direct comparison of PD and spousal controls and of PD and non-spousal controls, significantly differently abundant taxa were identified, and this included increased relative abundance of putative opportunistic-pathobiont species such as Moraxella catarrhalis. M. catarrhalis was also significantly correlated with more severe motor scores in PD subjects. This proof-of-concept study provides evidence that potential pathobionts are detected in the olfactory bulb and that a subset of changes in the PD microbiota community could be a consequence of unique environmental factors associated with PD living. We hypothesize that an altered deep nasal microbiota, characterized by a putative pro-inflammatory microbial community, could trigger neuroinflammation in PD.
Insights
Parkinson's disease (PD) patients show altered deep nasal microbiota, with increased opportunistic pathobionts like Moraxella catarrhalis. This may trigger neuroinflammation and dopamine loss, impacting olfactory function years before diagnosis.
Area of Science:
- Neuroscience
- Microbiology
- Genetics
Background:
- Olfactory dysfunction is an early, pre-motor symptom of Parkinson's disease (PD).
- Alterations in the deep nasal microbiota near the olfactory bulb may initiate neuroinflammation and dopamine loss in PD.
- Understanding these microbial changes is crucial for early PD detection and intervention.
Purpose of the Study:
- To investigate significant differences in the deep nasal microbiota of PD patients compared to healthy controls.
- To explore correlations between specific microbial taxa and PD symptom severity.
- To assess the influence of environmental factors on PD-associated microbiota.
Main Methods:
- 16S rRNA gene amplicon sequencing was used to characterize deep nasal cavity microbiota.
- PD subjects were compared with spousal and non-spousal healthy controls.
- Microbial taxa abundance was correlated with PD motor symptom severity.
Main Results:
- PD olfactory microbial communities showed higher similarity to spousal controls than non-spousal controls.
- Significantly different taxa were identified between PD and control groups.
- Increased abundance of opportunistic pathobionts, including Moraxella catarrhalis, was observed in PD patients and correlated with motor severity.
Conclusions:
- The study provides evidence for potential pathobionts in the olfactory bulb of PD patients.
- Changes in PD microbiota may be influenced by unique environmental factors within the household.
- An altered, pro-inflammatory deep nasal microbiota is hypothesized to trigger neuroinflammation in Parkinson's disease.
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