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Published on: February 5, 2020
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.
Purpose Of Review:
We review the recent advances in neurological toxicities of immune checkpoint inhibitors, with a focus on underlying pathophysiologic mechanisms and the implications on their therapeutical management.
Recent Findings:
A growing number of cancer patients benefit from immune checkpoint agents and oncologists are increasingly confronted with these novel autoimmune syndromes. During the last years, further progresses have occurred in this field, notably in the identification of specific clinical patterns, such as the association of myasthenic syndrome with myositis and myocarditis, and polyradiculoneuropathies accompanied by cerebrospinal fluid lymphocytic pleocytosis. In addition, recent immune-histological studies improved the understanding of the pathophysiologic mechanisms behind immune-related neurotoxicities.
Summary:
Neurological toxicity is rare compared with other organs and systems, but its potential morbidity and mortality requires a prompt management. If there is a consensus for steroids as a first-line treatment, no exhaustive clinical data exist for other treatments. Recent advances in the knowledge of pathophysiological mechanisms (behind these toxicities) should be taken into account for the management of these patients. Drugs targeting T-cell mediated inflammation should be preferred in patients who are refractory to steroids, whereas therapies targeting humoral mechanisms should be considered in specific cases associated with autoantibodies such as immune-related myasthenic syndrome.
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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