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Microglia in Alzheimer's Disease: a Key Player in the Transition Between Homeostasis and Pathogenesis
Karen N McFarland1,2,3, Paramita Chakrabarty4,5,6
1Department of Neurology, University of Florida, Gainesville, FL, 32610, USA.
Abstract:
Immune activation accompanies the development of proteinopathy in the brains of Alzheimer's dementia patients. Evolving from the long-held viewpoint that immune activation triggers the pathological trajectory in Alzheimer's disease, there is accumulating evidence now that microglial activation is neither pro-amyloidogenic nor just a simple reactive process to the proteinopathy. Preclinical studies highlight an interesting aspect of immunity, i.e., spurring immune system activity may be beneficial under certain circumstances. Indeed, a dynamic evolving relationship between different activation states of the immune system and its neuronal neighbors is thought to regulate overall brain organ health in both healthy aging and progression of Alzheimer's dementia. A new premise evolving from genome, transcriptome, and proteome data is that there might be at least two major phases of immune activation that accompany the pathological trajectory in Alzheimer's disease. Though activation on a chronic scale will certainly lead to neurodegeneration, this emerging knowledge of a potential beneficial aspect of immune activation allows us to form holistic insights into when, where, and how much immune system activity would need to be tuned to impact the Alzheimer's neurodegenerative cascade. Even with the trove of recently emerging -omics data from patients and preclinical models, how microglial phenotypes are functionally related to the transition of a healthy aging brain towards progressive degenerative state remains unknown. A deeper understanding of the synergism between microglial functional states and brain organ health could help us discover newer interventions and therapies that enable us to address the current paucity of disease-modifying therapies in Alzheimer's disease.
Insights
Immune activation in Alzheimer's disease (AD) is complex, with potential beneficial roles beyond simple reactivity. Understanding these dual phases is key to developing new AD therapies.
Area of Science:
- Neuroimmunology
- Neurodegenerative Diseases
- Alzheimer's Disease Pathogenesis
Background:
- Immune activation is a hallmark of Alzheimer's disease (AD), traditionally viewed as a trigger for neurodegeneration.
- Emerging evidence suggests microglial activation in AD is complex, not solely pro-amyloidogenic or reactive.
- A dynamic interplay between immune cells and neurons influences brain health during aging and AD progression.
Purpose of the Study:
- To explore the evolving understanding of immune activation in Alzheimer's disease.
- To investigate the potential dualistic (beneficial vs. detrimental) roles of immune responses in AD.
- To highlight the need for a nuanced understanding of microglial states in AD.
Main Methods:
- Analysis of genome, transcriptome, and proteome data from AD patients and preclinical models.
- Review of emerging evidence on microglial phenotypes and their functional roles.
- Integration of findings to understand immune system dynamics in brain aging and AD.
Main Results:
- Evidence suggests at least two distinct phases of immune activation in the AD pathological trajectory.
- Chronic immune activation correlates with neurodegeneration, but certain immune responses may be beneficial.
- The functional relationship between microglial phenotypes and the transition from healthy aging to AD remains unclear.
Conclusions:
- A holistic view of immune activation phases is crucial for therapeutic targeting in AD.
- Understanding the precise roles and timing of microglial states could lead to novel disease-modifying therapies.
- Further research is needed to elucidate the synergism between microglial function and brain health in AD.
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