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.

PubMed

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.