Behaviour and neuropathology in mice injected with human contactin-associated protein 2 antibodies

Maria Pia Giannoccaro1,2, David A Menassa1,3, Leslie Jacobson1

  • 1Nuffield Department of Clinical Neurosciences, University of Oxford, Oxford, UK.

Insights

This study shows that injecting CASPR2 antibodies into mice via the intraperitoneal route can cause behavioral changes and neuropathological effects, including memory deficits and glial activation, mimicking aspects of CNS diseases.

Area of Science:

  • Neuroscience
  • Immunology
  • Neuropathology

Background:

  • Serum antibodies targeting neurons or glia are linked to rare, treatable central nervous system (CNS) diseases.
  • Previous studies often used direct brain infusion of antibodies, unlike natural exposure routes.

Purpose of the Study:

  • To investigate the effects of intraperitoneally administered CASPR2 antibodies on mouse behavior and neuropathology.
  • To explore an alternative delivery method for studying antibody-mediated CNS diseases in mice.

Main Methods:

  • Purified IgG from CASPR2-antibody-positive patients or healthy individuals was injected intraperitoneally into mice.
  • Lipopolysaccharide was used to temporarily disrupt the blood-brain barrier.
  • Behavioral tests (locomotion, memory, social interaction) and post-mortem brain analysis were performed.

Main Results:

  • Mice receiving CASPR2-IgG showed reduced working memory and trends towards impaired short-term/long-term memory.
  • Social interaction was impaired, with increased latency and freezing behavior.
  • Neuropathology revealed IgG deposition, increased c-fos expression, Purkinje cell loss, and signs of glial activation (microglia, astrocytes, complement C3).

Conclusions:

  • Intraperitoneal administration of CASPR2 antibodies can induce behavioral and neuropathological changes in mice.
  • The findings suggest widespread CNS effects of CASPR2 antibodies, impacting various brain regions and cell types.
  • This model offers insights into CASPR2 antibody-associated CNS disorders, highlighting the role of glial activation.

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