Endothelial NMDA Receptor Involvement in Retinal Neurovascular Damage Following Prenatal Alcohol Exposure in a Mouse

Anaïs Leroy1, Audrey Valentin1, Camille Sautreuil1

  • 1Univ Rouen Normandie, INSERM U1245, Team Epigenetics and Pathophysiology of Neurodevelopmental Disorders, Rouen F-76000, France.

Insights

Prenatal alcohol exposure causes fetal alcohol spectrum disorders by damaging brain and eye development. This study shows that blocking NMDA receptors in endothelial cells prevents alcohol-induced retinal vascular defects and neuronal damage.

Area of Science:

  • Neuroscience
  • Developmental Biology
  • Pharmacology

Background:

  • Prenatal alcohol exposure (PAE) leads to fetal alcohol spectrum disorders (FASD), causing neurodevelopmental damage.
  • PAE disrupts brain and ocular development, affecting vasculature and neuronal positioning.
  • NMDA receptors (NMDARs) are implicated in FASD, with altered expression and function.

Purpose of the Study:

  • To investigate the role of endothelial NMDAR (eNMDAR) in retinal vascular development.
  • To determine if eNMDAR mediates PAE-induced retinal neurovascular defects.
  • To characterize the neurovascular phenotype in mice lacking eNMDAR under PAE conditions.

Main Methods:

  • Utilized an in vivo mouse model of FASD.
  • Employed transgenic mice lacking the endothelial GluN1 subunit of NMDAR (eNMDAR knockout).
  • Analyzed retinal vascular plexus development and neuronal cell density and positioning.

Main Results:

  • Deletion of eNMDAR mimicked PAE-induced defects in superficial vascular plexus progression.
  • eNMDAR knockout prevented some PAE-induced retinal vascular impairments.
  • Loss of eNMDAR increased calretinin-positive interneurons contacting vessels and protected against PAE-induced decrease.

Conclusions:

  • Endothelial NMDARs are crucial for normal retinal neurovascular development.
  • eNMDARs mediate, at least partially, the adverse effects of ethanol on the developing retina.
  • Targeting eNMDAR may offer a strategy to mitigate PAE-induced retinal damage in FASD.

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