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Updated: Aug 7, 2026

Characterization of Immune Cell-derived Extracellular Vesicles and Studying Functional Impact on Cell Environment
Published on: June 2, 2020
Extracellular vesicle-mediated immune regulation in central nervous system diseases: Mechanistic insights and
Shaokai Tang1, Qinqin Lin2, Yanxia Tang3
1College of Sports Science, Jishou University, Jishou, Hunan 416000, China.
Abstract:
Central nervous system (CNS) diseases are major contributors to long-term disability and cognitive impairment, with neuroinflammation and immune dysregulation closely implicated in their pathogenesis. Extracellular vesicles (EVs) are phospholipid bilayer-enclosed membrane vesicles secreted by diverse cell types that mediate communication between the periphery and CNS through the delivery of various bioactive molecules, including proteins, lipids, and non-coding RNA, thereby exerting immunomodulatory functions. Accumulating evidence has demonstrated that EVs contribute to immune regulation during the initiation and progression of CNS diseases by modulating pathological processes, including neuroinflammation, pro-inflammatory polarization of glial cells, NLRP3 inflammasome activation, and pyroptosis. Previous studies have reported that exercise exerts neuroprotective effects in CNS diseases through EVs-mediated immune regulation. This review summarizes and critically evaluates the biological characteristics of EVs, EV-mediated immunoregulatory mechanisms, the roles of EV-mediated immunoregulation in CNS diseases, and exercise interventions, thereby providing theoretical insights into the beneficial effects of exercise on brain health.
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