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Updated: Jun 5, 2026

Obtaining Human Microglia from Adult Human Brain Tissue
Published on: August 30, 2020
Somatic mutations reveal the ontogeny of human microglia
Abstract:
Microglia are the resident hematopoietic cells of the central nervous system 1 . In mice, microglia seed the brain during embryogenesis and can be maintained throughout life with minimal input from adult hematopoiesis 2-4 . The origins of human microglia are less clear, but recent evidence suggests that marrow-derived cells may be able to supplement the human microglial pool in certain individuals 5,6 . Here, to investigate the ontogeny of human microglia, we develop a method that uses the collection of accumulated somatic mutations which uniquely labels each clone of cells to track the infiltration of marrow-derived cells into the human brain. Applying this method to 20 aged individuals, we find evidence of an influx of marrow-derived cells into the brain in all examined individuals. Single cell analysis, including single cell lineage tracing using mitochondrial DNA variants, demonstrates that these infiltrating cells are nearly identical to microglia and can comprise a large fraction of the microglial pool. Analysis of large-scale sequencing cohorts demonstrates a protective association between most types of clonal hematopoiesis and Alzheimer's disease. In sum, this work uncovers a widespread influx of myeloid cells into the healthy human brain which serves to reinforce the pool of human microglia and becomes common with aging.
Insights
The aging human brain shows a significant influx of marrow-derived myeloid cells, which are nearly identical to microglia. This infiltration reinforces the brain
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Microglia are the brain's resident immune cells, crucial for central nervous system health.
- While mouse microglia origins are understood, human microglia ontogeny and potential marrow contribution remain less clear.
Purpose of the Study:
- To investigate the origins and dynamics of human microglia.
- To track marrow-derived cell infiltration into the aging human brain.
Main Methods:
- Developed a novel method using accumulated somatic mutations for clonal cell labeling.
- Applied single-cell analysis and lineage tracing (mtDNA variants) to track cell origins.
- Analyzed large-scale sequencing cohorts for clonal hematopoiesis associations.
Main Results:
- Evidence of marrow-derived cell influx into the brain was found in all 20 aged individuals studied.
- Infiltrating cells closely resemble microglia and can constitute a substantial portion of the microglial pool.
- Clonal hematopoiesis shows a protective association with Alzheimer's disease.
Conclusions:
- A widespread influx of myeloid cells into the healthy human brain occurs with aging.
- These cells reinforce the human microglial pool, suggesting a dynamic immune system in the brain.
- Understanding these cellular dynamics may offer new insights into brain aging and neurodegenerative diseases.
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