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Neurologic Autoimmunity in the Era of Checkpoint Inhibitor Cancer Immunotherapy
Anastasia Zekeridou1, Vanda A Lennon2
1Department of Laboratory Medicine and Pathology, Mayo Clinic, Rochester, MN; Department of Neurology, Mayo Clinic, Rochester, MN.
Abstract:
Neurologic autoimmune disorders in the context of systemic cancer reflect antitumor immune responses against onconeural proteins that are autoantigens in the nervous system. These responses observe basic principles of cancer immunity and are highly pertinent to oncological practice since the introduction of immune checkpoint inhibitor cancer therapy. The patient's autoantibody profile is consistent with the antigenic composition of the underlying malignancy. A major determinant of the pathogenic outcome is the anatomic and subcellular location of the autoantigen. IgGs targeting plasma membrane proteins (eg, muscle acetylcholine receptor -IgG in patients with paraneoplastic myasthenia gravis) have pathogenic potential. However, IgGs specific for intracellular antigens (eg, antineuronal nuclear antibody 1 [anti-Hu] associated with sensory neuronopathy and small cell lung cancer) are surrogate markers for CD8+ T lymphocytes targeting peptides derived from nuclear or cytoplasmic proteins. In an inflammatory milieu, those peptides translocate to neural plasma membranes as major histocompatibility complex class I protein complexes. Paraneoplastic neurologic autoimmunity can affect any level of the neuraxis and may be mistaken for cancer progression. Importantly, these disorders generally respond favorably to early-initiated immunotherapy and cancer treatment. Small cell lung cancer and thymoma are commonly associated with neurologic autoimmunity, but in the context of checkpoint inhibitor therapy, other malignancy associations are increasingly recognized.
Insights
Paraneoplastic neurologic autoimmunity involves antitumor immune responses targeting neural proteins in cancer patients. Early immunotherapy and cancer treatment improve outcomes, even with immune checkpoint inhibitors.
Area of Science:
- Neuroimmunology
- Oncology
- Cancer Immunology
Background:
- Neurologic autoimmune disorders are linked to antitumor immune responses against onconeural proteins.
- These responses are crucial in cancer immunity, especially with immune checkpoint inhibitor therapy.
- Autoantibody profiles correlate with malignancy, and autoantigen location influences pathogenicity.
Purpose of the Study:
- To explore the mechanisms of paraneoplastic neurologic autoimmunity in cancer.
- To understand the role of autoantibodies and T-cell responses in these disorders.
- To highlight the clinical implications for oncological practice and immunotherapy.
Main Methods:
- Analysis of autoantibody profiles in relation to underlying malignancies.
- Investigation of autoantigen location (plasma membrane vs. intracellular) and its pathogenic significance.
- Review of immune mechanisms involving CD8+ T lymphocytes and MHC class I presentation.
Main Results:
- Antibodies targeting plasma membrane proteins can be pathogenic.
- Antibodies to intracellular antigens serve as markers for T-cell responses.
- Neurologic autoimmunity can affect any part of the nervous system and mimic cancer progression.
Conclusions:
- Paraneoplastic neurologic autoimmunity is driven by antitumor immunity.
- Early immunotherapy and cancer treatment are vital for favorable outcomes.
- Increasingly recognized associations with various malignancies, particularly with checkpoint inhibitor therapy.
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