Astrocyte pathology in the ventral prefrontal white matter in depression

Grazyna Rajkowska1, Beata Legutko1, Mohadetheh Moulana1

  • 1Department of Psychiatry and Human Behavior, University of Mississippi Medical Center, USA.

Insights

Major depressive disorder (MDD) is linked to reduced white matter astrocyte density and glial fibrillary acidic protein (GFAP) mRNA expression in the prefrontal cortex, suggesting astrocyte pathology contributes to myelin and axon disturbances.

Area of Science:

  • Neuroscience
  • Cell Biology
  • Psychiatry

Background:

  • Astrocyte functions in white matter are less understood than in gray matter.
  • Previous studies show altered myelin-related gene expression in the ventral prefrontal cortex (vPFC) in major depressive disorder (MDD).
  • White matter astrocytes are crucial for myelin maintenance.

Purpose of the Study:

  • To investigate if white matter astrocyte morphometry is altered in MDD.
  • To examine astrocyte density, size, and glial fibrillary acidic protein (GFAP) expression in the vPFC white matter of MDD patients.
  • To assess astrocyte density in a rat model of chronic unpredictable stress (CUS).

Main Methods:

  • Quantified GFAP-immunoreactive astrocyte density and cell body size in human vPFC white matter from MDD and control subjects.
  • Estimated GFAP-immunoreactive astrocyte area fraction (cell bodies + processes).
  • Measured GFAP mRNA expression using qRT-PCR and assessed astrocyte density in rat vPFC white matter following CUS.

Main Results:

  • Significantly decreased density of both fibrous and smooth GFAP-immunoreactive astrocytes in MDD patients.
  • Significantly reduced area fraction of GFAP immunoreactivity in MDD, with unchanged mean soma size.
  • Significantly decreased GFAP mRNA expression in MDD and reduced astrocyte density in CUS rats.

Conclusions:

  • Decreased density and GFAP mRNA expression of white matter astrocytes in MDD may correlate with myelin pathology.
  • Astrocyte pathology in MDD could contribute to axon disturbances and impaired white matter signal conduction.
  • Findings highlight the role of white matter astrocytes in MDD pathophysiology.

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