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Blood-brain barrier disruption in simian immunodeficiency virus encephalitis

M K Luabeya1, L M Dallasta, C L Achim

  • 1Department of Pathology (Division of Neuropathology), University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

Insights

Disruptions in blood-brain barrier (BBB) tight junctions occur in simian immunodeficiency virus encephalitis (SIVE). These changes correlate with perivascular macrophage accumulation and BBB integrity loss, potentially facilitating further macrophage infiltration into the brain.

Area of Science:

  • Neuropathology
  • Neuroimmunology
  • Vascular Biology

Background:

  • Monocyte-derived macrophages (MDM) are implicated in human immunodeficiency virus encephalitis (HIVE) neuropathogenesis.
  • Previous research suggests MDM access the central nervous system (CNS) via blood-brain barrier (BBB) tight junction disruptions in HIVE.
  • These disruptions are associated with HIV-1-infected perivascular macrophages and serum protein extravasation.

Purpose of the Study:

  • To investigate the role of BBB tight junctions in simian immunodeficiency virus encephalitis (SIVE).
  • To examine alterations in tight junction proteins (occludin and zonula occludens-1) in SIVE.
  • To correlate these alterations with perivascular macrophage accumulation and BBB integrity.

Main Methods:

  • Immunohistochemical analysis of basal ganglia tissue from SIV-infected macaques with and without encephalitis.
  • Evaluation of tight junction proteins occludin and zonula occludens-1 (ZO-1).
  • Assessment of perivascular macrophage accumulation, fibrinogen extravasation, and glucose transporter isoform-1 (GLUT-1) expression.

Main Results:

  • Cerebral vessels in SIVE macaques showed fragmented and decreased immunoreactivity for occludin and ZO-1 compared to controls.
  • These tight junction alterations were associated with perivascular macrophage accumulation and aberrant occludin/ZO-1 staining within these cells.
  • Perivascular fibrinogen extravasation and altered GLUT-1 staining patterns were observed in regions with disrupted tight junctions.

Conclusions:

  • Tight junction disruption is a feature of SIVE, linked to perivascular macrophage accumulation.
  • BBB integrity is compromised in SIVE, evidenced by tight junction protein alterations and plasma protein extravasation.
  • These BBB disruptions may facilitate further perivascular macrophage accumulation in SIVE, contributing to neuropathogenesis.

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