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Two Cases of Pediatric Leucine-Rich Glioma-Inactivated Protein-1 Encephalitis: Clinical Course, Challenges, and
Khushboo Verma1, Duriel Hardy1
1Department of Neurology, Dell Medical School at UT Austin, Austin Texas.
Insights
Pediatric Leucine-rich glioma-inactivated protein 1 (LGI-1) encephalitis presents unique diagnostic challenges. Early immunotherapy and antiseizure medications are crucial for managing neuropsychiatric symptoms and seizures in children.
Area of Science:
- Neurology
- Immunology
- Pediatrics
Background:
- Leucine-rich glioma-inactivated protein 1 (LGI-1) encephalitis is a rare autoimmune limbic encephalitis.
- Pediatric cases are infrequent and poorly understood compared to adult cases.
Purpose of the Study:
- To review and analyze two pediatric cases of LGI-1 encephalitis.
- To compare pediatric manifestations with existing adult literature.
- To highlight diagnostic challenges and treatment outcomes in children.
Main Methods:
- Retrospective review of two pediatric cases from a tertiary care facility.
- Detailed analysis of clinical presentation, progression, diagnosis, treatment, and outcome.
- Literature comparison to contextualize pediatric versus adult disease manifestations.
Main Results:
- Diagnostic challenges were evident due to rarity and absence of typical faciobrachial dystonic seizures in children.
- Neuropsychiatric symptoms and refractory focal seizures prompted empirical treatment with methylprednisolone.
- Diagnosis confirmed by positive serum LGI-1 antibody testing; serum is more sensitive than CSF.
- Combination therapy improved seizure control and cognitive symptoms.
Conclusions:
- LGI-1 encephalitis should be considered in pediatric patients with unexplained neuropsychiatric symptoms and focal seizures.
- Serum and CSF antibody testing are important for diagnosis.
- Further research is needed to define pediatric presentations and optimal treatment protocols.
Background:
Leucine-rich glioma-inactivated protein 1 (LGI-1) encephalitis is a rare form of autoimmune limbic encephalitis. Although relatively well documented in adults, pediatric cases are rare and remain poorly understood.
Methods:
We reviewed two pediatric cases of LGI-1 encephalitis from a single tertiary care facility retrospectively. The detailed analysis included assessment of the initial presentation, clinical progression, diagnostic challenges, treatments, and outcome. To contextualize the differences between pediatric and adult manifestations of disease, we compared these findings with existing literature.
Results:
Both cases illustrate the diagnostic challenges faced at initial presentation due to the rarity of this diagnosis in children and the absence of characteristic faciobrachial dystonic seizures, which is common in adults. The constellation of neuropsychiatric symptoms and refractory focal seizures led to a high clinical suspicion for autoimmune encephalitis, therefore, both cases were treated empirically with intravenous methylprednisolone. The diagnosis in both cases was confirmed with positive serum antibody testing, reinforcing that LGI-1 antibodies are more sensitive in the serum rather than the cerebrospinal fluid (CSF). Seizure control and improvement in cognitive symptoms was achieved through a combination of immunotherapy and antiseizure medications.
Conclusions:
This case series underscores the significance of considering LGI-1 encephalitis in the differential diagnosis of pediatric patients exhibiting unexplained neuropsychiatric symptoms and focal seizures and emphasizes the importance of performing both serum and CSF antibody testing. It is necessary to conduct further research to identify the full range of pediatric presentations and to determine the optimal treatment protocol.
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