Macrophages in spinal cord injury: phenotypic and functional change from exposure to myelin debris

Xi Wang1, Kai Cao, Xin Sun

  • 1W. M. Keck Center for Collaborative Neuroscience, Rutgers, The State University of New Jersey, New Jersey; Institute of Neurosciences, the Fourth Military Medical University, Xian, China.

Glia
|December 3, 2014
PubMed

Insights

Myelin debris in spinal cord injury (SCI) shifts macrophages to a pro-inflammatory M1-like state. This lipid accumulation impairs healing and worsens neurotoxicity, highlighting a key factor in SCI pathology.

Area of Science:

  • Neuroscience
  • Immunology
  • Regenerative Medicine

Background:

  • Spinal cord injury (SCI) involves macrophage activation and persistent inflammation.
  • Macrophage phenotypes (M1 and M2) and their functions in SCI are not fully understood.
  • Factors modulating macrophage phenotype in response to injury are poorly characterized.

Purpose of the Study:

  • To investigate how bone-marrow derived macrophages (BMDMs) change phenotype and function in response to spinal cord injury factors.
  • To differentiate infiltrating BMDMs from resident microglia in the injured spinal cord.
  • To elucidate the role of myelin debris in macrophage activation and lipid accumulation post-SCI.

Main Methods:

  • Developed a model to distinguish BMDMs from microglia.
  • Analyzed macrophage markers (Mac-2, CX3CR1) distribution in injured spinal cord.
  • Investigated the effect of myelin debris on BMDM phenotype and ATP-binding cassette transporter A1 (ABCA1) activation in vitro.
  • Assessed the phagocytic capacity of foamy macrophages.

Main Results:

  • Infiltrating BMDMs (high Mac-2, low CX3CR1) migrate to the injury epicenter, while microglia (low Mac-2, high CX3CR1) distribute to lesion edges.
  • Myelin debris induces a switch from M2 to M1-like phenotype in BMDMs.
  • Myelin debris activates ABCA1 for cholesterol efflux, but this mechanism is overwhelmed, leading to foamy macrophages and lipid plaques.
  • Foamy macrophages exhibit impaired phagocytosis of neutrophils, exacerbating tissue damage.

Conclusions:

  • Myelin debris is a critical factor modulating macrophage activation in SCI.
  • Lipid accumulation due to macrophage phenotype switching contributes significantly to SCI pathology.
  • Targeting myelin debris or lipid metabolism may offer therapeutic strategies for SCI.