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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Loss of homeostatic microglial phenotype in CSF1R-related Leukoencephalopathy
Liam Kempthorne1,2, Hyejin Yoon1,3, Charlotte Madore4
1Department of Neuroscience, Mayo Clinic, 4500 San Pablo Road, Jacksonville, FL, 32224, USA.
Abstract:
Microglia are resident macrophages of the central nervous system, and their unique molecular signature is dependent upon CSF-1 signaling. Previous studies have demonstrated the importance of CSF-1R in survival and development of microglia in animal models, but the findings are of uncertain relevance to understanding the influence of CSF-1R on microglia in humans. Hereditary diffuse leukoencephalopathy with spheroids (HDLS) [also known as adult onset leukoencephalopathy with spheroids and pigmented glia (ALSP)] is a neurodegenerative disorder primarily affecting cerebral white matter, most often caused by mutations of CSF1R. Therefore, we hypothesized that the molecular profile of microglia may be affected in HDLS. Semi-quantitative immunohistochemistry and quantitative transcriptomic profiling revealed reduced expression of IBA-1 and P2RY12 in both white and gray matter microglia of HDLS. In contrast, there was increased expression of CD68 and CD163 in microglia in affected white matter. In addition, expression of selective and specific microglial markers, including P2RY12, CX3CR1 and CSF-1R, were reduced in affected white matter. These results suggest that microglia in white matter in HDLS lose their homeostatic phenotype. Supported by gene ontology analysis, it is likely that an inflammatory phenotype is a key pathogenic feature of microglia in vulnerable brain regions of HDLS. Our findings suggest a potential mechanism of disease pathogenesis by linking aberrant CSF-1 signaling to altered microglial phenotype. They also support the idea that HDLS may be a primary microgliopathy. We observed increased expression of CSF-2 in gray matter compared to affected white matter, which may contribute to selective vulnerability of white matter in HDLS. Our findings suggest that methods that restore the homeostatic phenotype of microglia might be considered treatment approaches in HDLS.
Insights
Hereditary diffuse leukoencephalopathy with spheroids (HDLS) involves altered microglia, the brain's immune cells. This study reveals a loss of homeostatic microglia and gain of inflammatory phenotypes in HDLS, suggesting a primary microgliopathy and potential therapeutic targets.
Area of Science:
- Neuroimmunology
- Neurodegenerative Diseases
- Cellular Biology
Background:
- Microglia, the central nervous system's resident macrophages, are crucial for brain homeostasis and are regulated by colony-stimulating factor 1 (CSF-1) signaling.
- Mutations in CSF1R are linked to Hereditary Diffuse Leukoencephalopathy with Spheroids (HDLS), a neurodegenerative disorder affecting white matter, but the impact on human microglia remains unclear.
- Understanding CSF-1R's role in human microglia is essential, given its implications in HDLS pathogenesis.
Purpose of the Study:
- To investigate the molecular and phenotypic changes in microglia in patients with HDLS.
- To explore the hypothesis that altered CSF-1 signaling in HDLS affects microglial identity and function.
- To identify potential therapeutic strategies by understanding microglial behavior in HDLS.
Main Methods:
- Employed semi-quantitative immunohistochemistry to analyze protein expression levels.
- Utilized quantitative transcriptomic profiling to assess gene expression patterns.
- Performed gene ontology analysis to interpret functional pathways affected in HDLS microglia.
Main Results:
- HDLS microglia exhibited reduced expression of homeostatic markers (IBA-1, P2RY12, CX3CR1, CSF-1R) in both white and gray matter.
- Increased expression of inflammatory markers (CD68, CD163) was observed in microglia within affected white matter.
- Elevated CSF-2 expression in gray matter compared to white matter suggests a role in white matter vulnerability.
Conclusions:
- Microglia in HDLS white matter display a loss of homeostatic phenotype and adopt an inflammatory profile, indicating HDLS may be a primary microgliopathy.
- Aberrant CSF-1 signaling is linked to altered microglial phenotypes, providing a potential mechanism for HDLS pathogenesis.
- Restoring microglial homeostatic phenotype presents a potential therapeutic avenue for HDLS treatment.

