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Updated: Jul 26, 2025

Quantitative 3D In Silico Modeling q3DISM of Cerebral Amyloid-beta Phagocytosis in Rodent Models of Alzheimer's Disease
Published on: December 26, 2016
The role of microbiome-host interactions in the development of Alzheimer´s disease
Christian Weber1, Alexander Dilthey1, Patrick Finzer1
1Institute of Medical Microbiology and Hospital Hygiene, University Hospital Düsseldorf, Heinrich Heine University Düsseldorf, Düsseldorf, Germany.
Abstract:
Alzheimer`s disease (AD) is the most prevalent cause of dementia. It is often assumed that AD is caused by an aggregation of extracellular beta-amyloid and intracellular tau-protein, supported by a recent study showing reduced brain amyloid levels and reduced cognitive decline under treatment with a beta-amyloid-binding antibody. Confirmation of the importance of amyloid as a therapeutic target notwithstanding, the underlying causes of beta-amyloid aggregation in the human brain, however, remain to be elucidated. Multiple lines of evidence point towards an important role of infectious agents and/or inflammatory conditions in the etiology of AD. Various microorganisms have been detected in the cerebrospinal fluid and brains of AD-patients and have thus been hypothesized to be linked to the development of AD, including Porphyromonas gingivalis (PG) and Spirochaetes. Intriguingly, these microorganisms are also found in the oral cavity under normal physiological conditions, which is often affected by multiple pathologies like caries or tooth loss in AD patients. Oral cavity pathologies are mostly accompanied by a compositional shift in the community of oral microbiota, mainly affecting commensal microorganisms and referred to as 'dysbiosis'. Oral dysbiosis seems to be at least partly mediated by key pathogens such as PG, and it is associated with a pro-inflammatory state that promotes the destruction of connective tissue in the mouth, possibly enabling the translocation of pathogenic microbiota from the oral cavity to the nervous system. It has therefore been hypothesized that dysbiosis of the oral microbiome may contribute to the development of AD. In this review, we discuss the infectious hypothesis of AD in the light of the oral microbiome and microbiome-host interactions, which may contribute to or even cause the development of AD. We discuss technical challenges relating to the detection of microorganisms in relevant body fluids and approaches for avoiding false-positives, and introduce the antibacterial protein lactoferrin as a potential link between the dysbiotic microbiome and the host inflammatory reaction.
Insights
Alzheimer's disease may be linked to oral microbiome dysbiosis, where pathogens like Porphyromonas gingivalis contribute to inflammation and potential brain infection. This review explores the infectious hypothesis and lactoferrin
Area of Science:
- Neuroscience
- Microbiology
- Immunology
Background:
- Alzheimer's disease (AD) is the leading cause of dementia, often attributed to beta-amyloid and tau pathology.
- While amyloid-targeting therapies show promise, the root causes of amyloid aggregation in AD remain unclear.
- Emerging evidence suggests infectious agents and inflammation play a significant role in AD etiology.
Purpose of the Study:
- To review the infectious hypothesis of Alzheimer's disease, focusing on the role of the oral microbiome.
- To explore the link between oral dysbiosis, Porphyromonas gingivalis, and neuroinflammation in AD pathogenesis.
- To discuss challenges in detecting microorganisms in the brain and introduce lactoferrin as a potential therapeutic target.
Main Methods:
- Literature review of studies investigating microorganisms in AD patients' cerebrospinal fluid and brain tissue.
- Analysis of research on oral microbiome composition, dysbiosis, and its association with systemic inflammation.
- Examination of studies on Porphyromonas gingivalis and its potential translocation from the oral cavity to the nervous system.
Main Results:
- Various microorganisms, including Porphyromonas gingivalis and Spirochaetes, have been detected in AD patients.
- Oral pathologies and dysbiosis are associated with pro-inflammatory states that may facilitate microbial translocation.
- Lactoferrin is identified as a potential mediator between the dysbiotic microbiome and host inflammatory responses.
Conclusions:
- Oral microbiome dysbiosis is a plausible contributor to Alzheimer's disease development.
- Infectious agents and inflammation, particularly originating from the oral cavity, warrant further investigation as AD etiological factors.
- Targeting the oral microbiome and associated inflammatory pathways, potentially using agents like lactoferrin, may offer novel therapeutic strategies for AD.
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