Neurological adverse events of immune checkpoint blockade: from pathophysiology to treatment

Stefania Cuzzubbo1,2, Antoine F Carpentier1,2

  • 1Service de Neurologie, AP-HP, Hôpital Saint-Louis, Paris, France.

Abstract

Insights

Immune checkpoint inhibitors can cause rare but serious neurological toxicities. Understanding their mechanisms guides tailored treatments beyond steroids, improving patient outcomes.

Area of Science:

  • Neuroimmunology
  • Oncology
  • Pharmacology

Background:

  • Immune checkpoint inhibitors (ICIs) are increasingly used in cancer therapy, leading to novel autoimmune syndromes.
  • Neurological toxicities from ICIs, though rare, present significant morbidity and mortality risks.
  • Recent research has identified specific clinical patterns and elucidated pathophysiologic mechanisms of ICI-related neurotoxicities.

Approach:

  • Review of recent advances in understanding ICI-induced neurological toxicities.
  • Focus on underlying pathophysiologic mechanisms.
  • Analysis of therapeutic management strategies.

Key Points:

  • Specific syndromes include myasthenic syndrome with myositis/myocarditis and polyradiculoneuropathies.
  • Immune-histological studies enhance understanding of neurotoxicity mechanisms.
  • Steroids are first-line treatment, but data on other therapies are limited.

Conclusions:

  • Prompt management of neurological toxicity is crucial.
  • Therapeutic strategies should consider underlying pathophysiologic mechanisms.
  • T-cell targeted therapies are preferred for steroid-refractory cases; humoral therapies for autoantibody-associated conditions.

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