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Updated: Jun 7, 2025

Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
The emerging role of disease-associated microglia in Parkinson's disease
Ritika R Samant1, David G Standaert1, Ashley S Harms1,2
1Center for Neurodegeneration and Experimental Therapeutics, Department of Neurology, Heersink School of Medicine, University of Alabama at Birmingham, Birmingham, AL, United States.
Abstract:
Disease-associated microglia (DAM) are a subset of microglia that appear at various stages of central nervous system neurodegenerative diseases. DAM were identified using single-cell RNA sequencing within Alzheimer's Disease (AD) where they were characterized by their unique localization near amyloid-β plaques and their phagocytic and lipid-metabolizing features. Unfortunately, activation and etiology of DAM are only understood within the context of AD where Triggering Receptor Expressed On Myeloid Cells 2 (TREM2), a receptor for amyloid-β, appears to be the key regulator in microglial transition to a DAM state. Despite this reliance on TREM2 in AD, DAM appear across other neurodegenerative diseases in which TREM2 may not be a critical player. This begs the question of if DAM are truly the same across all neurodegenerative diseases or if there exists a heterogeneity to DAM across neurodegenerative pathologies. Investigation into this critical gap in the field regarding DAM etiology and activation, as well as DAM function, could be delineated utilizing models of Parkinson's disease (PD) to complement studies in models of AD. Though highly underexplored regarding DAM, PD with its pattern of protein aggregation-associated pathology like AD could serve as the spatiotemporal comparison against AD findings to ascertain the nature of DAM. The experimental vehicle that could guide the future of such investigation is the multi-omics model. With a compound approach focusing on exploring triggers for DAM at the chromatin or mRNA level and related protein output, it becomes possible to strongly characterize and firmly answer the question of what is a DAM.
Insights
Disease-associated microglia (DAM) are found in neurodegenerative diseases. Further research is needed to understand if DAM are the same across all conditions, like Alzheimer's and Parkinson's disease.
Area of Science:
- Neuroscience
- Immunology
- Genomics
Background:
- Disease-associated microglia (DAM) are a specific type of immune cell found in the central nervous system during neurodegenerative diseases.
- In Alzheimer's Disease (AD), DAM are characterized by their proximity to amyloid-β plaques and their roles in phagocytosis and lipid metabolism.
- The activation of DAM in AD is strongly linked to the TREM2 receptor, but DAM are also observed in other neurodegenerative diseases where TREM2 may not be critical.
Purpose of the Study:
- To investigate the potential heterogeneity of DAM across different neurodegenerative diseases.
- To explore the activation triggers and functional roles of DAM beyond Alzheimer's Disease.
- To compare DAM characteristics in Parkinson's Disease (PD) models with existing findings in AD models.
Main Methods:
- Utilizing multi-omics approaches to analyze DAM.
- Investigating triggers for DAM at the chromatin and mRNA levels.
- Correlating molecular findings with protein output to characterize DAM.
Main Results:
- DAM exhibit distinct features in Alzheimer's Disease, regulated by TREM2.
- DAM are present in other neurodegenerative diseases, suggesting potential heterogeneity.
- The specific role and activation mechanisms of DAM in Parkinson's Disease remain underexplored.
Conclusions:
- The precise nature and uniformity of DAM across various neurodegenerative pathologies require further investigation.
- Comparative studies using models like Parkinson's Disease are essential to understand DAM heterogeneity.
- Multi-omics analysis offers a powerful approach to definitively characterize DAM and their functions.
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