Related Experiment Video
Updated: Mar 18, 2026

Construction of Vapor Chambers Used to Expose Mice to Alcohol During the Equivalent of all Three Trimesters of Human Development
Published on: July 13, 2014
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.
Abstract:
Prenatal alcohol exposure (PAE) induces neurodevelopmental damage leading to fetal alcohol spectrum disorders (FASD) by altering both brain and ocular development. Recent data showed that PAE impairs brain cortical and retinal vasculature leading to defective positioning of interneurons. In the retina, PAE disturbs vascular development and the association of calretinin neurons with vessels. The NMDA receptor (NMDAR) is a major target of alcohol in the brain, and both ligand binding to NMDARs and the expression of NMDAR subunits are altered in FASD. Given that NMDAR is also expressed in endothelial cells and that glutamate stimulation of endothelial NMDAR (eNMDAR) regulates cortical interneuron positioning along blood vessels, we hypothesize that eNMDAR is critical for retinal vascular development and mediates PAE-induced defects. Using an in vivo model of FASD and transgenic mice lacking the endothelial GluN1 subunit of the NMDAR, this study aimed to characterize the neurovascular phenotype of the developing retina in mice of either sex. Our findings show that deletion of the eNMDAR reproduces key PAE-like alterations, including impaired progression of the superficial vascular plexus and changes in neuronal density, particularly in cells located closest to the retinal vasculature. Conversely, in eNMDAR knock-out mice, some of the retinal defects typically induced by PAE are prevented. Moreover, eNMDAR deletion led to an increased number of calretinin-positive interneurons contacting vessels and prevented the PAE-induced decrease. Together, these findings demonstrate that eNMDARs contribute to normal retinal neurovascular development and mediate, at least in part, the adverse effects of ethanol exposure in FASD.
More Related Videos
09:50Experimental Methods for Testing the Effects of Neurotrophic Peptide, ADNF-9, Against Alcohol-induced Apoptosis during Pregnancy in C57BL/6 Mice
Published on: April 24, 2013
19:57The Use of Trace Eyeblink Classical Conditioning to Assess Hippocampal Dysfunction in a Rat Model of Fetal Alcohol Spectrum Disorders
Published on: August 5, 2017