Microglia promote vascular remodeling in a mouse model of chronic stress

Zachary Hage1, Miguel M Madeira2, Kimberly Nnah3

  • 1Program in Molecular and Cellular Pharmacology, Renaissance School of Medicine at Stony Brook University, Stony Brook, NY, USA; Department of Pharmacological Sciences, Renaissance School of Medicine at Stony Brook University, Stony Brook, NY, USA; Scholars in Biomedical Sciences Program, Renaissance School of Medicine at Stony Brook University, Stony Brook, NY, USA.

Insights

Chronic stress triggers brain inflammation and vascular changes linked to Major Depressive Disorder (MDD). Microglia activate, promoting immune cell entry via CD31, which drives MDD pathology.

Area of Science:

  • Neuroscience
  • Immunology
  • Vascular Biology

Background:

  • Major Depressive Disorder (MDD) affects over 350 million globally.
  • Chronic stress is a key risk factor for MDD, linked to vascular dysfunction.
  • Immune cell and cerebral vasculature interactions under chronic stress are poorly understood.

Purpose of the Study:

  • Investigate immune-vascular interactions in the medial prefrontal cortex (mPFC) during chronic stress.
  • Determine the temporal sequence of microglial and vascular changes.
  • Elucidate the role of endothelial CD31 signaling in stress-induced neuroinflammation and vascular deficits.

Main Methods:

  • Utilized chronic social defeat stress (CSDS) and subthreshold stress mouse models.
  • Employed CD31 knockout mice to study endothelial signaling.
  • Assessed microglial activation, vascular morphology, and immune cell infiltration via immunohistochemistry and functional assays.

Main Results:

  • CSDS induced microglial activation and increased microglia-vessel interactions in the mPFC, preceding vascular changes.
  • Interferon-gamma (IFNγ)-stimulated microglia released cytokines promoting macrophage infiltration.
  • CD31 deletion prevented macrophage recruitment and mitigated CSDS-induced deficits.

Conclusions:

  • Microglia contribute to cerebrovascular remodeling and macrophage infiltration via CD31-dependent pathways during chronic stress.
  • These immune-vascular interactions are implicated in MDD pathophysiology and vascular comorbidities.
  • Targeting these pathways may offer novel therapeutic strategies for MDD.

Related Concept Videos