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Updated: Jan 29, 2026

High-throughput Flow Cytometry Cell-based Assay to Detect Antibodies to N-Methyl-D-aspartate Receptor or Dopamine-2 Receptor in Human Serum
Published on: November 23, 2013
A mouse model of seizures in anti-N-methyl-d-aspartate receptor encephalitis
Olga Taraschenko1, Howard S Fox2, Sean J Pittock3
1Division of Epilepsy, Department of Neurological Sciences, University of Nebraska Medical Center, Omaha, Nebraska.
Objective:
Seizures develop in 80% of patients with anti-N-methyl-d-aspartate receptor (NMDAR) encephalitis, and these represent a major cause of morbidity and mortality. Anti-NMDAR antibodies have been linked to memory loss in encephalitis; however, their role in seizures has not been established. We determined whether anti-NMDAR antibodies from autoimmune encephalitis patients are pathogenic for seizures.
Methods:
We performed continuous intracerebroventricular infusion of cerebrospinal fluid (CSF) or purified immunoglobulin (IgG) from the CSF of patients with anti-NMDAR encephalitis or polyclonal rabbit anti-NMDAR IgG, in male C57BL/6 mice. Seizure status during a 2-week treatment was assessed with video-electroencephalography. We assessed memory, anxiety-related behavior, and motor function at the end of treatment and assessed the extent of neuronal damage and gliosis in the CA1 region of hippocampus. We also performed whole-cell patch recordings from the CA1 pyramidal neurons in hippocampal slices of mice with seizures.
Results:
Prolonged exposure to rabbit anti-NMDAR IgG, patient CSF, or human IgG purified from the CSF of patients with encephalitis induced seizures in 33 of 36 mice. The median number of seizures recorded in 2 weeks was 13, 39, and 35 per mouse in these groups, respectively. We observed only 18 brief nonconvulsive seizures in 11 of 29 control mice (median seizure count of 0) infused with vehicle (n = 4), normal CSF obtained from patients with noninflammatory central nervous system (CNS) conditions (n = 12), polyclonal rabbit IgG (n = 7), albumin (n = 3), and normal human IgG (n = 3). We did not observe memory deficits, anxiety-related behavior, or motor impairment measured at 2 weeks in animals treated with CSF from affected patients or rabbit IgG. Furthermore, there was no evidence of hippocampal cell loss or astrocyte proliferation in the same mice.
Significance:
Our findings indicate that autoantibodies can induce seizures in anti-NMDAR encephalitis and offer a model for testing novel therapies for refractory autoimmune seizures.
Insights
Autoantibodies against N-methyl-D-aspartate receptors (NMDAR) can directly cause seizures in patients with autoimmune encephalitis. This study provides a model for developing new treatments for these difficult-to-treat autoimmune seizures.
Area of Science:
- Neuroimmunology
- Neurology
- Autoimmune Diseases
Background:
- Seizures occur in 80% of anti-N-methyl-D-aspartate receptor (NMDAR) encephalitis patients, contributing significantly to morbidity and mortality.
- While anti-NMDAR antibodies are linked to memory loss, their direct role in seizure pathogenesis remains unclear.
Purpose of the Study:
- To determine if anti-NMDAR antibodies from autoimmune encephalitis patients are pathogenic and can induce seizures.
Main Methods:
- Cerebrospinal fluid (CSF) or purified immunoglobulin (IgG) from anti-NMDAR encephalitis patients and rabbit anti-NMDAR IgG were infused into mice.
- Seizure activity was monitored via video-electroencephalography over two weeks.
- Behavioral tests, neuronal damage assessment, and electrophysiological recordings were performed.
Main Results:
- Intracerebroventricular infusion of anti-NMDAR IgG or patient CSF induced seizures in 33 of 36 mice.
- Control groups receiving vehicle or normal CSF/IgG showed significantly fewer seizures.
- No significant memory deficits, anxiety, motor impairment, or hippocampal damage were observed in treated mice.
Conclusions:
- Autoantibodies against NMDAR can directly induce seizures, establishing a pathogenic link.
- This research offers a valuable animal model for evaluating novel therapeutic strategies for refractory autoimmune seizures.
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