Stiff-person Syndrome and GAD Antibody-spectrum Disorders: GABAergic Neuronal Excitability, Immunopathogenesis and Update on Antibody Therapies

Синдром ригидного человека и расстройства спектра антител к GAD: ГАМКергическая возбудимость нейронов, иммунопатогенез и современные подходы к терапии антителами
Marinos C. Dalakas
2022-01-27

GAD antibody-spectrum disordersGlutamic Acid Decarboxylase (GAD) antibodiesStiff Person Syndromeautoimmune neuronal excitabilityhigh serum anti-GAD antibody titers
Although antibodies against Glutamic Acid Decarboxylase (GAD) were originally associated with Stiff Person Syndrome (SPS), they now denote the "GAD antibody-spectrum disorders (GAD-SD)" that include Cerebellar Ataxia, Autoimmune Epilepsy, Limbic Encephalitis, PERM and eye movement disorder. In spite of the unique clinical phenotype that each of these disorders has, there is significant overlapping symptomatology characterized by autoimmune neuronal excitability. In addition to GAD, three other autoantibodies, against glycine receptors, amphiphysin and gephyrin, are less frequently or rarely associated with SPS-SD. Very high serum anti-GAD antibody titers are a key diagnostic feature for all GAD-SD, commonly associated with the presence of GAD antibodies in the CSF, a reduced CSF GABA level and increased anti-GAD-specific IgG intrathecal synthesis denoting stimulation of B-cell clones in the CNS. Because anti-GAD antibodies from the various hyperexcitability syndromes recognize the same dominant GAD epitope, the clinical heterogeneity among GAD-SD patients remains unexplained. The paper highlights the biologic basis of autoimmune hyperexcitability connected with the phenomenon of reciprocal inhibition as the fundamental mechanism of the patients' muscle stiffness and spasms; addresses the importance of high-GAD antibody titers in diagnosis, pinpointing the diagnostic challenges in patients with low-GAD titers or their distinction from functional disorders; and discusses whether high GAD-antibodies are disease markers or pathogenic in the context of their association with reduced GABA level in the brain and CSF. Finally, it focuses on therapies providing details on symptomatic GABA-enhancing drugs and the currently available immunotherapies in a step-by-step approach. The prospects of future immunotherapeutic options with antibody therapies are also summarized.
1
Anti-GAD antibodies from different hyperexcitability syndromes recognize the same dominant GAD epitope, yet this does not explain clinical heterogeneity among patients.
2
GAD antibody-spectrum disorders (GAD-SD) include SPS, Cerebellar Ataxia, Autoimmune Epilepsy, Limbic Encephalitis, PERM, and eye movement disorder.
3
GAD-SD share overlapping symptomatology characterized by autoimmune neuronal hyperexcitability despite distinct clinical phenotypes.
4
High GAD-antibody titers pose diagnostic challenges when low titers occur or when distinguishing from functional disorders, raising questions whether antibodies are markers or pathogenic.
5
Other autoantibodies (against glycine receptors, amphiphysin, gephyrin) are less frequently or rarely associated with SPS-SD.
6
Reciprocal inhibition dysfunction underlies autoimmune hyperexcitability and is proposed as the fundamental mechanism for muscle stiffness and spasms in patients.
7
Therapeutic discussion includes symptomatic GABA-enhancing drugs, a stepwise summary of current immunotherapies, and prospects for future antibody-based immunotherapeutic options.
8
Very high serum anti-GAD antibody titers, often with CSF GAD antibodies, reduced CSF GABA, and intrathecal anti-GAD IgG synthesis, are key diagnostic features of GAD-SD.

GAD antibody-spectrum disorders (GAD-SD), including Stiff Person Syndrome, cerebellar ataxia, autoimmune epilepsy, limbic encephalitis, PERM, and eye movement disorder

Autoimmune GABAergic neuronal hyperexcitability mechanisms, immunopathogenesis related to anti-GAD (and other autoantibodies), diagnostic significance of high anti-GAD titers and CSF findings, and antibody-targeted immunotherapies and symptomatic GABA-enhancing treatments

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2022-01-27
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Marinos C. Dalakas
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