CNS resident macrophages enhance dysfunctional angiogenesis and circulating monocytes infiltration in brain

Li Ma1, Xiaonan Zhu1, Chaoliang Tang1

  • 1University of California, San Francisco.

Research Square
|May 22, 2023
PubMed

Insights

Targeting myeloid immune cells, specifically CNS resident macrophages, can mitigate brain arteriovenous malformations (bAVMs). Depleting these cells early in development reduces bAVM severity and hemorrhage risk.

Area of Science:

  • Neuroscience
  • Immunology
  • Vascular Biology

Background:

  • Myeloid immune cells, including macrophages, are prevalent in brain arteriovenous malformations (bAVMs).
  • The specific roles of central nervous system (CNS) resident and circulating monocyte-derived macrophages in bAVM pathogenesis remain unclear.
  • Genetic mutations in activin-like kinase 1 (ALK1) or endoglin, causative genes for bAVMs, lead to increased pro-angiogenic, inflammatory, and innate immune signaling.

Approach:

  • Utilized RNA sequencing on cultured cells and bAVM samples to identify molecular changes.
  • Administered a colony-stimulating factor 1 receptor (CSF1R) inhibitor to bAVM mouse models with endothelial Alk1 deletion.
  • Investigated the effects of transient depletion of CNS resident macrophages on bAVM development and severity.

Key Points:

  • Downregulation of ALK1 or endoglin promotes pro-angiogenic and inflammatory responses in endothelial cells.
  • Early, transient depletion of CNS resident macrophages significantly reduced bAVM phenotype severity in mice.
  • This depletion inhibited angiogenesis, dysplastic vasculature, and macrophage infiltration, while improving endothelial tight junction integrity.
  • CSF1R inhibition also prevented severe hemorrhage in established bAVMs.

Conclusions:

  • Endothelial mutations in bAVM causative genes activate CNS resident macrophages, driving bAVM progression.
  • CNS resident macrophages represent a promising therapeutic target for mitigating bAVM development and severity.
  • Targeting these macrophages may offer a novel strategy for preventing bAVM-related complications, including hemorrhage.