Somatic mutations reveal the ontogeny of human microglia

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.