Human cerebrospinal fluid monoclonal CASPR2 autoantibodies induce changes in electrophysiology, functional MRI, and

Scott van Hoof1, Jakob Kreye2, César Cordero-Gómez3

  • 1German Center for Neurodegenerative Diseases (DZNE) Berlin, 10117 Berlin, Germany; Department of Neurology and Experimental Neurology, Charité-Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität Berlin, 10117 Berlin, Germany; Helmholtz Innovation Lab BaoBab (Brain Antibody-omics and B-cell Lab), Berlin, Germany.

PubMed

Insights

Researchers investigated anti-contactin associated protein receptor 2 (CASPR2) encephalitis, revealing that CASPR2 autoantibodies directly cause brain hyperexcitability and subtle behavioral changes in animal models. These findings support the pathogenicity of CASPR2 autoantibodies.

Area of Science:

  • Neuroimmunology
  • Autoimmune Encephalitis
  • Synaptic Dysfunction

Background:

  • Anti-contactin associated protein receptor 2 (CASPR2) encephalitis presents with diverse neurological and psychiatric symptoms.
  • The precise mechanisms linking CASPR2 autoantibodies to synaptic dysfunction and clinical manifestations remain unclear.

Purpose of the Study:

  • To elucidate the molecular and clinical mechanisms of CASPR2 encephalitis.
  • To investigate the direct pathogenic role of CASPR2 autoantibodies.

Main Methods:

  • Cloning of human monoclonal anti-CASPR2 autoantibodies (mAbs) from patient cerebrospinal fluid.
  • In vitro studies on CASPR2-contactin 2 interaction and antibody internalization.
  • In vivo electrophysiological (EEG) and MRI studies in rodent models following mAb administration.

Main Results:

  • Isolated mAbs bind to the discoidin domain of CASPR2 with high affinity, disrupting its interaction with contactin 2.
  • In vivo administration of CASPR2 mAbs induced brain hyperexcitability (EEG) and reduced functional connectivity (MRI) in rodents.
  • Mice exhibited subtle behavioral changes, primarily affecting sociability, without spontaneous seizures.

Conclusions:

  • Experimental data strongly support the direct pathogenicity of CASPR2 autoantibodies in encephalitis.
  • EEG and MRI represent promising objective tools for assessing animal models of CASPR2 encephalitis, particularly for subtle phenotypes.

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