Clonal hematopoiesis in LGI1‐antibody encephalitis

Author:

Shin Soo Jean12ORCID,Jang Yoonhyuk1ORCID,Ahn Soo Hyun1ORCID,Mon Su Yee1,You Ji Hye1,An Hong Yul3,Sun Choong Hyun3,Koh Youngil345,Chu Kon1,Lee Sang Kun1ORCID,Lee Soon‐Tae1ORCID

Affiliation:

1. Department of Neurology Seoul National University Hospital, Seoul National University College of Medicine Seoul 03080 South Korea

2. Department of Biomedical Sciences Seoul National University College of Medicine Seoul 03080 South Korea

3. NOBO Medicine Inc. Seoul 04799 South Korea

4. Department of Internal Medicine Seoul National University Hospital Seoul 03080 South Korea

5. Center for Precision Medicine Seoul National University Hospital Seoul 03080 South Korea

Abstract

AbstractObjectiveLeucine‐rich glioma‐inactivated 1 (LGI1)‐antibody encephalitis (LGI1e), the major form of autoimmune encephalitis (AE) presented with memory loss and faciobrachial dystonic seizure, commonly develops in aged population. Hematologic aging is often accompanied by clonal hematopoiesis (CH), a phenomenon in which specific mutations accumulate, potentially leading to autoimmune disorders or malignancies. Our research aimed to investigate the connection between clonal hematopoiesis of indeterminate potential (CHIP) and LGI1e.MethodsPeripheral blood samples from consecutive LGI1e patients were collected and analyzed for 24 clonal CHIP using targeted gene sequencing. The results were compared to a control dataset from an ethnically matched health care cohort. Patient characteristics were analyzed based on their CHIP status.ResultsA total of 52 LGI1e patients were enrolled for this study. Among them, three patients (5.8%) exhibited functional mutations in the ASXL1 gene, one of the CHIP‐associated genes analyzed by targeted sequencing. This frequency was significantly higher compared to that of the control cohort (1%, p = 0.015). Nevertheless, the patients showed no difference in the clinical characteristics, laboratory results, and immunotherapy outcomes.InterpretationLGI1e showed high frequency of ASXL1 functional mutation in the CHIP analysis, which may contribute to the underlying pathogenesis. Further research is needed to determine its direct role in the development of autoimmunity and disease progression.

Funder

Korea Health Industry Development Institute

Seoul National University Hospital

Publisher

Wiley

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