Defining the Microglia Response during the Time Course of Chronic Neurodegeneration
James E Vincenti1, Lita Murphy1, Kathleen Grabert1
1The Roslin Institute and Royal (Dick) School of Veterinary Studies, University of Edinburgh, Easter Bush, Midlothian, United Kingdom.
Unlabelled:
Inflammation has been proposed as a major component of neurodegenerative diseases, although the precise role it plays has yet to be defined. We examined the role of key contributors to this inflammatory process, microglia, the major resident immune cell population of the brain, in a prion disease model of chronic neurodegeneration. Initially, we performed an extensive reanalysis of a large study of prion disease, where the transcriptome of mouse brains had been monitored throughout the time course of disease. Our analysis has provided a detailed classification of the disease-associated genes based on cell type of origin and gene function. This revealed that the genes upregulated during disease, regardless of the strain of mouse or prion protein, are expressed predominantly by activated microglia. In order to study the microglia contribution more specifically, we established a mouse model of prion disease in which the 79A murine prion strain was introduced by an intraperitoneal route into BALB/cJ(Fms-EGFP/-) mice, which express enhanced green fluorescent protein under the control of the c-fms operon. Samples were taken at time points during disease progression, and histological analysis of the brain and transcriptional analysis of isolated microglia was carried out. The analysis of isolated microglia revealed a disease-specific, highly proinflammatory signature in addition to an upregulation of genes associated with metabolism and respiratory stress. This study strongly supports the growing recognition of the importance of microglia within the prion disease process and identifies the nature of the response through gene expression analysis of isolated microglia.
Importance:
Inflammation has been proposed as a major component of neurodegenerative diseases. We have examined the role of key contributors to this inflammatory process, microglia, the major resident immune cell population of the brain, in a murine prion disease model of chronic neurodegeneration. Our study demonstrates that genes upregulated throughout the disease process are expressed predominantly by microglia. A disease-specific, highly proinflammatory signature was observed in addition to an upregulation of genes associated with metabolism and respiratory stress. This study strongly supports the growing recognition of the important contribution of microglia to a chronic neurodegenerative disease process.
Insights
Microglia, the brain's immune cells, are key drivers of inflammation in prion disease. Gene expression analysis reveals a proinflammatory signature and metabolic stress in these cells during neurodegeneration.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Neuroinflammation is implicated in neurodegenerative diseases, but the specific role of microglia remains unclear.
- Microglia are the primary immune cells in the central nervous system and play a critical role in brain health and disease.
Purpose of the Study:
- To investigate the role of microglia in prion disease, a model of chronic neurodegeneration.
- To characterize the gene expression profile of microglia during prion disease progression.
Main Methods:
- Reanalysis of prion disease transcriptomic data to classify disease-associated genes by cell type and function.
- Establishment of a prion disease mouse model (BALB/cJ(Fms-EGFP/-) mice) for specific microglia isolation.
- Histological and transcriptional analysis of isolated microglia at various disease time points.
Main Results:
- Genes upregulated during prion disease are predominantly expressed by activated microglia.
- Isolated microglia exhibit a disease-specific, highly proinflammatory gene expression signature.
- Upregulation of genes related to metabolism and respiratory stress was observed in microglia.
Conclusions:
- Microglia are central players in the prion disease inflammatory process.
- Gene expression analysis of isolated microglia elucidates their specific contribution to neurodegeneration.


