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A peripheral signature of Alzheimer's disease featuring microbiota-gut-brain axis markers
Moira Marizzoni1,2, Peppino Mirabelli3, Elisa Mombelli4
1Laboratory of Biological Psychiatry, IRCCS Istituto Centro San Giovanni Di Dio Fatebenefratelli, Brescia, Italy. mmarizzoni@fatebenefratelli.eu.
Background:
Increasing evidence links the gut microbiota (GM) to Alzheimer's disease (AD) but the mechanisms through which gut bacteria influence the brain are still unclear. This study tests the hypothesis that GM and mediators of the microbiota-gut-brain axis (MGBA) are associated with the amyloid cascade in sporadic AD.
Methods:
We included 34 patients with cognitive impairment due to AD (CI-AD), 37 patients with cognitive impairment not due to AD (CI-NAD), and 13 cognitively unimpaired persons (CU). We studied the following systems: (1) fecal GM, with 16S rRNA sequencing; (2) a panel of putative MGBA mediators in the blood including immune and endothelial markers as bacterial products (i.e., lipopolysaccharide, LPS), cell adhesion molecules (CAMs) indicative of endothelial dysfunction (VCAM-1, PECAM-1), vascular changes (P-, E-Selectin), and upregulated after infections (NCAM, ICAM-1), as well as pro- (IL1β, IL6, TNFα, IL18) and anti- (IL10) inflammatory cytokines; (3) the amyloid cascade with amyloid PET, plasma phosphorylated tau (pTau-181, for tau pathology), neurofilament light chain (NfL, for neurodegeneration), and global cognition measured using MMSE and ADAScog. We performed 3-group comparisons of markers in the 3 systems and calculated correlation matrices for the pooled group of CI-AD and CU as well as CI-NAD and CU. Patterns of associations based on Spearman's rho were used to validate the study hypothesis.
Results:
CI-AD were characterized by (1) higher abundance of Clostridia_UCG-014 and decreased abundance of Moryella and Blautia (p < .04); (2) elevated levels of LPS (p < .03), upregulation of CAMs, Il1β, IL6, and TNFα, and downregulation of IL10 (p < .05); (3) increased brain amyloid, plasma pTau-181, and NfL (p < 0.004) compared with the other groups. CI-NAD showed (1) higher abundance of [Eubacterium] coprostanoligenes group and Collinsella and decreased abundance of Lachnospiraceae_ND3007_group, [Ruminococcus]_gnavus_group and Oscillibacter (p < .03); (2) upregulation of PECAM-1 and TNFα (p < .03); (4) increased plasma levels of NfL (p < .02) compared with CU. Different GM genera were associated with immune and endothelial markers in both CI-NAD and CI-AD but these mediators were widely related to amyloid cascade markers only in CI-AD.
Conclusions:
Specific bacterial genera are associated with immune and endothelial MGBA mediators, and these are associated with amyloid cascade markers in sporadic AD. The physiological mechanisms linking the GM to the amyloid cascade should be further investigated to elucidate their potential therapeutic implications.
Insights
Specific gut bacteria are linked to immune changes and Alzheimer's disease (AD) pathology. These findings highlight the gut microbiota's role in AD and suggest potential therapeutic targets.
Area of Science:
- Neuroscience
- Microbiology
- Immunology
Background:
- Growing evidence suggests a link between the gut microbiota (GM) and Alzheimer's disease (AD).
- The precise mechanisms by which gut bacteria influence brain pathology remain unclear.
- This study investigates the association between GM, microbiota-gut-brain axis (MGBA) mediators, and the amyloid cascade in sporadic AD.
Purpose of the Study:
- To test the hypothesis that GM and MGBA mediators are associated with the amyloid cascade in sporadic AD.
- To identify specific bacterial genera linked to immune and endothelial markers.
- To explore the relationship between these mediators and AD biomarkers.
Main Methods:
- Fecal 16S rRNA sequencing to analyze gut microbiota composition.
- Blood analysis of immune markers, endothelial cell adhesion molecules (CAMs), and cytokines.
- Assessment of the amyloid cascade using amyloid PET, plasma phosphorylated tau (pTau-181), and neurofilament light chain (NfL).
- Cognitive function was measured using MMSE and ADAScog.
Main Results:
- Patients with cognitive impairment due to AD (CI-AD) showed distinct GM profiles (e.g., increased Clostridia_UCG-014, decreased Moryella/Blautia).
- CI-AD patients had elevated lipopolysaccharide (LPS), increased CAMs, pro-inflammatory cytokines (IL1β, IL6, TNFα), and decreased IL10.
- CI-AD was associated with increased brain amyloid, plasma pTau-181, and NfL compared to other groups.
- Specific GM genera correlated with immune/endothelial markers in both CI-AD and CI-NAD groups, but these mediators strongly related to amyloid cascade markers only in CI-AD.
Conclusions:
- Specific bacterial genera are associated with MGBA mediators, which in turn are linked to the amyloid cascade in sporadic AD.
- These findings underscore the role of the gut microbiota in AD pathogenesis.
- Further investigation into the physiological mechanisms is warranted for potential therapeutic implications.
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