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Innate Immune and Fungal Model of Alzheimer's Disease
Bodo Parady1,2
1Children's Hospital Oakland Research Institute, Oakland, CA, USA.
Abstract:
Various fungi and bacteria can colonize in the brain and produce physical alterations seen in Alzheimer's disease (AD). Environmental and genetic factors affect the occurrence of fungal colonization, and how fungi can grow, enter the brain, and interact with the innate immune system. The essence of AD development is the defeat of the innate immune system, whether through vulnerable patient health status or treatment that suppresses inflammation by suppressing the innate immune system. External and mechanical factors that lead to inflammation are a door for pathogenic opportunity. Current research associates the presence of fungi in the etiology of AD and is shown in cerebral tissue at autopsy. From the time of the discovery of AD, much speculation exists for an infective cause. Identifying any AD disease organism is obscured by processes that can take place over years. Amyloid protein deposits are generally considered to be evidence of an intrinsic response to stress or imbalance, but instead amyloid may be evidence of the innate immune response which exists to destroy fungal colonization through structural interference and cytotoxicity. Fungi can remain ensconced for a long time in niches or inside cells, and it is the harboring of fungi that leads to repeated reinfection and slow wider colonization that eventually leads to a grave outcome. Although many fungi and bacteria are associated with AD affected tissues, discussion here focuses on Candida albicans as the archetype of human fungal pathology because of its wide proliferation as a commensal fungus, extensive published research, numerous fungal morphologies, and majority proliferation in AD tissues.
Insights
Fungi and bacteria can colonize the brain, contributing to Alzheimer's disease (AD) pathology. Amyloid deposits may represent an immune response to fungal infections, suggesting an infectious cause for AD.
Area of Science:
- Neuroscience
- Infectious Diseases
- Immunology
Background:
- Alzheimer's disease (AD) pathology is increasingly linked to microbial colonization in the brain.
- Fungal and bacterial presence in cerebral tissues is observed in AD patients.
- The role of the innate immune system in AD pathogenesis is critical and can be compromised.
Purpose of the Study:
- To explore the role of fungal colonization in the etiology of Alzheimer's disease.
- To investigate the interaction between fungi, the innate immune system, and AD development.
- To propose amyloid deposits as a potential immune response to fungal infections.
Main Methods:
- Review of current research associating fungi with AD etiology.
- Analysis of the innate immune system's role in combating fungal brain colonization.
- Focus on Candida albicans as a model organism due to its prevalence and association with AD tissues.
Main Results:
- Fungal and bacterial colonization can cause physical brain alterations characteristic of AD.
- The defeat of the innate immune system, due to health status or anti-inflammatory treatments, facilitates pathogenic invasion.
- Amyloid protein deposits may function as a defense mechanism against fungal colonization.
Conclusions:
- Fungal presence is a significant factor in Alzheimer's disease development.
- The chronic harboring of fungi leads to persistent inflammation and disease progression.
- Candida albicans serves as a key example of fungal pathogens implicated in AD pathology.