CNS border-associated macrophages in the homeostatic and ischaemic brain

Gabriela Gerganova1, Alexandra Riddell1, Alyson A Miller1

  • 1British Heart Foundation Glasgow Cardiovascular Research Centre, Institute of Cardiovascular & Medical Sciences, University of Glasgow, Glasgow G12 8TA, United Kingdom.

Insights

Border-associated macrophages (BAMs) are crucial immune cells in the brain. Recent research reveals their complex roles in brain homeostasis and ischemic stroke, offering new therapeutic avenues.

Area of Science:

  • Neuroimmunology
  • Cerebrovascular Biology

Background:

  • Border-associated macrophages (BAMs) are specialized immune cells in the central nervous system (CNS) that were previously understudied compared to microglia.
  • Recent advances in single-cell analysis have uncovered significant heterogeneity and complexity within BAM populations in both homeostatic and disease states.

Purpose of the Study:

  • To review the current understanding of BAM function in the context of ischemic stroke.
  • To discuss the implications of recent findings on BAM heterogeneity, physiology, and roles in stroke pathology.

Main Methods:

  • Comprehensive review of recent literature on BAMs, including single-cell immunophenotyping and transcriptomic analyses.
  • Examination of experimental evidence regarding BAM accumulation, genetic transformation, and functional roles in ischemic stroke.

Main Results:

  • BAM subsets exhibit distinct transcriptional signatures and potential functional phenotypes, involved in immune surveillance, waste clearance, and vascular permeability.
  • BAMs accumulate and undergo genetic transformation in response to ischemia, potentially having deleterious effects in the acute stroke phase but influencing long-term outcomes.

Conclusions:

  • BAMs play a complex, dual role in ischemic stroke, with potential for both harm and benefit.
  • Understanding BAM heterogeneity and function is critical for developing targeted immunomodulatory therapies for stroke management.