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Updated: Feb 6, 2026

A Simple Cell-based Immunofluorescence Assay to Detect Autoantibody Against the N-Methyl-D-Aspartate NMDA Receptor in Blood
Published on: January 9, 2018
Monoclonal antibodies from a patient with anti-NMDA receptor encephalitis
Rashmi Sharma1, Fetweh H Al-Saleem1, Jessica Panzer2
1Lankenau Institute for Medical Research Wynnewood Pennsylvania 19096.
Objective:
Anti-NMDA receptor encephalitis (ANRE) is a potentially lethal encephalitis attributed to autoantibodies against the N-methyl-D-aspartate receptor (NMDAR). We sought to clone and characterize monoclonal antibodies (mAbs) from an ANRE patient.
Methods:
We used a hybridoma method to clone two IgG mAbs from a female patient with ANRE without teratoma, and characterized their binding activities on NMDAR-transfected cell lines, cultured primary rat neurons, and mouse hippocampus. We also assessed their effects on voluntary locomotor activity in mice and binding to NMDAR in vivo.
Results:
The mAbs are structurally distinct and arose from distinct B-cell lineages. They recognize different epitopes on the GluN1 amino terminal domain (ATD), yet both require amino acids important for post-translational modification. Both mAbs bind subsets of GluN1 on cultured rat hippocampal neurons. The 5F5 mAb binds mouse brain hippocampal tissues, and the GluN1 recognized on cultured rat neurons was substantially extra-synaptic. Antibody binding to primary hippocampal neurons induced receptor internalization. The NMDAR inhibitor MK-801 inhibited internalization without preventing mAb binding; AP5 inhibited both mAb binding and internalization. Exposure of mice to the mAbs following permeabilization of the blood brain barrier increased voluntary wheel running activity, similar to low doses of the NMDAR inhibitor, MK-801.
Interpretation:
These mAbs recapitulate features demonstrated in previous studies of ANRE patient CSF, and exert effects on NMDAR in vitro and in vivo consistent with modulation of NMDAR activity.
Insights
Researchers cloned two distinct monoclonal antibodies (mAbs) from an anti-NMDA receptor encephalitis (ANRE) patient. These antibodies target the N-methyl-D-aspartate receptor (NMDAR), affecting neuronal activity and behavior in mice.
Area of Science:
- Neuroimmunology
- Molecular Neuroscience
Background:
- Anti-NMDA receptor encephalitis (ANRE) is a severe autoimmune neurological disorder.
- Autoantibodies against the N-methyl-D-aspartate receptor (NMDAR) are implicated in ANRE pathogenesis.
Purpose of the Study:
- To clone and characterize monoclonal antibodies (mAbs) from an ANRE patient.
- To investigate the binding properties and functional effects of these mAbs on NMDAR.
Main Methods:
- Hybridoma technology was used to generate two distinct IgG mAbs.
- Antibody binding was assessed on cell lines, primary neurons, and mouse brain tissue.
- In vivo effects on mouse behavior and NMDAR binding were evaluated.
Main Results:
- The mAbs recognize different epitopes on the NMDAR GluN1 amino terminal domain.
- Both mAbs bind to hippocampal neurons, inducing NMDAR internalization.
- In vivo, mAbs increased locomotor activity in mice, mimicking NMDAR inhibition.
Conclusions:
- The generated mAbs replicate key features of ANRE patient autoantibodies.
- These mAbs modulate NMDAR activity in vitro and in vivo, providing insights into ANRE mechanisms.
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