Astrocyte‐Derived Exosomes Contribute to Pathologies of Neuromyelitis Optica Spectrum Disorder in Rodent Model

Author:

Xie Yi1,Chen Bo1ORCID,Wang Qiong2,Chen Xuejiao1,Lai Wenwen3,Xu Yaping4,Deng Saiyue1,Yu Zhiyuan1,Xie Minjie1,Bu Bitao1,Mou Dapeng5,Yi Chenju6,Ding Fengfei13ORCID,Wang Wei1ORCID

Affiliation:

1. Department of Neurology, Tongji Hospital, Tongji Medical College Huazhong University of Science and Technology Wuhan China

2. Department of Neurology First Affiliated Hospital of University of Science and Technology of China Hefei China

3. Department of Pharmacology, School of Basic Medical Sciences, Shanghai Medical College Fudan University Shanghai China

4. Department of Neurology, Xiangyang No. 1 People's Hospital Hubei University of Medicine Xiangyang China

5. Beijing Tongren Eye Center, Beijing Tongren Hospital Capital Medical University Beijing China

6. Research Center Seventh Affiliated Hospital of Sun Yat‐sen University Shenzhen China

Abstract

ObjectiveNeuromyelitis optica spectrum disorder (NMOSD) is an inflammatory demyelinating disease that leads to severe disability. A large proportion of NMOSD patients are seropositive for aquaporin‐4 autoantibodies (AQP4‐IgG, named as NMO‐IgG) targeting AQP4, which is selectively expressed on astrocytes in the central nervous system. This study tests the hypothesis that in response to NMO‐IgG, the pathogenic astrocyte‐derived exosomes are released and injure the neighboring cells.MethodsIgG purified from serum of either NMOSD patients or healthy controls was used to generate astrocyte‐derived exosomes (AST‐ExosNMO vs AST‐ExosCON) in cultured rat astrocytes. The exosomes were respectively delivered to cultured rat oligodendrocytes in vitro, tissue culture of rat optic nerve ex vivo, and rat optic nerve in vivo to evaluate the pathogenic roles of AST‐ExosNMO. The microRNA (miRNA) sequencing of AST‐Exos and verification were performed to identify the key pathogenic miRNA. The custom‐designed adeno‐associated virus (AAV) antagonizing the key miRNA was evaluated for its therapeutic effects in vivo. Moreover, the serum levels of the key exosomal miRNA were measured between NMOSD patients and healthy controls.ResultsAST‐ExosNMO led to notable demyelination in both cultured oligodendrocytes and optic nerve tissue. Exosomal miR‐129‐2‐3p was identified as the key miRNA mediating the demyelinating pathogenesis via downstream target gene SMAD3. AAV antagonizing miR‐129‐2‐3p protected against demyelination in an NMOSD rodent model. The serum exosomal miR‐129‐2‐3p level was significantly elevated in NMOSD patients and correlated with disease severity.InterpretationAstrocytes targeted by NMO‐IgG release pathogenic exosomes that could potentially be used as therapeutic targets or disease monitoring biomarkers in NMOSD. ANN NEUROL 2023;94:163–181

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

Neurology (clinical),Neurology

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