Selective Limbic and Striatal Atrophy Corresponds to Regional Gene Expression in Leucine‐Rich Glioma‐Inactivated‐1 Immunoglobulin G Autoimmune Encephalitis

Objective To characterize regional brain atrophy patterns, evaluate their association with regional leucine‐rich glioma‐inactivated‐1 ( LGI1 ) gene expression, and identify clinical predictors of hippocampal atrophy in LGI1 autoimmune encephalitis (AE). Methods This study compared regional brain volumes in LGI1‐AE patients versus age‐ and sex‐matched healthy controls (HC) and Alzheimer's disease (AD) patients. LGI1 gene expression was derived from the Allen Human Brain Atlas. Multivariable linear regression and generalized linear models were utilized. Results A total of 55 LGI1‐AE patients were included. Median age was 68 years (IQR 62.5–74.2 years) at volumetric analysis, after 19 months (IQR 11–45 months) from symptom onset. Compared with HC ( n = 55) and AD patients ( n = 55), LGI1‐AE patients had greater regional atrophy of the hippocampus, insula, caudate, and putamen ( p < 0.002). Longitudinal analyses demonstrated hippocampal and pallidal atrophy after covariate adjustment. Among those who did not fulfill limbic encephalitis criteria and/or had non‐lesional magnetic resonance imaging, limbic and striatal atrophy were identified compared with HC ( p < 0.01). Regions with the greatest differential atrophy corresponded to higher LGI1 gene expression (Spearman ρ = 0.7, p = 0.005). Severe cognitive deficits at diagnosis ( β = −0.56; p = 0.002) and longer disease duration ( β = −0.01; p = 0.001) independently predicted total hippocampal volume ( R 2 = 0.31). Interpretation LGI1‐AE demonstrates a distinct pattern of limbic and striatal atrophy that differs from AD and aligns with regional LGI1 expression, supporting a model of selective network vulnerability. Greater baseline cognitive impairment and longer disease duration independently associated with hippocampal atrophy, underscoring the potential importance of early diagnosis and treatment to limit structural brain injury. ANN NEUROL 2026

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Journal
Annals of Neurology
Published
2026-10-06
DOI
https://doi.org/10.1002/ana.78389
Primary Topic
Autoimmune Neurological Disorders and Treatments
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article
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article

Selective Limbic and Striatal Atrophy Corresponds to Regional Gene Expression in Leucine‐Rich Glioma‐Inactivated‐1 Immunoglobulin G Autoimmune Encephalitis

Dean M. Wingerchuk, Andreu Vilaseca, Albert Aboseif, Naveen Kumar Paramasivan et al.
Annals of Neurology
Autoimmune Neurological Disorders and Treatments
article

Selective Limbic and Striatal Atrophy Corresponds to Regional Gene Expression in Leucine‐Rich Glioma‐Inactivated‐1 Immunoglobulin G Autoimmune Encephalitis

Dean M. Wingerchuk, Andreu Vilaseca, Albert Aboseif, Naveen Kumar Paramasivan, Αναστασία Ζεκερίδου, Laura Cacciaguerra, Pallab Sarker, Divyanshu Dubey, Andrea Stabile, Sarosh R. Irani, Burcu Zeydan, Andrew B. McKeon, Michael R. Basso, Christopher G. Schwarz, Luke R. Christenson, Benjamin H. Brinkmann, Kejal Kantarci, Sean Joseph Pittock, Anuja Patil, Sravya Kondrakunta, Xiaoyang Li
article en

Abstract

Objective To characterize regional brain atrophy patterns, evaluate their association with regional leucine‐rich glioma‐inactivated‐1 ( LGI1 ) gene expression, and identify clinical predictors of hippocampal atrophy in LGI1 autoimmune encephalitis (AE). Methods This study compared regional brain volumes in LGI1‐AE patients versus age‐ and sex‐matched healthy controls (HC) and Alzheimer's disease (AD) patients. LGI1 gene expression was derived from the Allen Human Brain Atlas. Multivariable linear regression and generalized linear models were utilized. Results A total of 55 LGI1‐AE patients were included. Median age was 68 years (IQR 62.5–74.2 years) at volumetric analysis, after 19 months (IQR 11–45 months) from symptom onset. Compared with HC ( n = 55) and AD patients ( n = 55), LGI1‐AE patients had greater regional atrophy of the hippocampus, insula, caudate, and putamen ( p < 0.002). Longitudinal analyses demonstrated hippocampal and pallidal atrophy after covariate adjustment. Among those who did not fulfill limbic encephalitis criteria and/or had non‐lesional magnetic resonance imaging, limbic and striatal atrophy were identified compared with HC ( p < 0.01). Regions with the greatest differential atrophy corresponded to higher LGI1 gene expression (Spearman ρ = 0.7, p = 0.005). Severe cognitive deficits at diagnosis ( β = −0.56; p = 0.002) and longer disease duration ( β = −0.01; p = 0.001) independently predicted total hippocampal volume ( R 2 = 0.31). Interpretation LGI1‐AE demonstrates a distinct pattern of limbic and striatal atrophy that differs from AD and aligns with regional LGI1 expression, supporting a model of selective network vulnerability. Greater baseline cognitive impairment and longer disease duration independently associated with hippocampal atrophy, underscoring the potential importance of early diagnosis and treatment to limit structural brain injury. ANN NEUROL 2026

Annals of Neurology
Mayo Clinic (US), Mayo Clinic in Arizona (US), Mayo Clinic in Florida (US)
Openalex Percentile: Top 13%
Autoimmune Neurological Disorders and Treatments
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