Matrine protects against experimental autoimmune encephalomyelitis through modulating microglial ferroptosis

实验性自身免疫性脑脊髓炎 小胶质细胞 促炎细胞因子 炎症 氧化应激 神经炎症 免疫学 多发性硬化 神经退行性变 神经保护 肿瘤坏死因子α 发病机制 生物 医学 药理学 病理 疾病 生物化学
作者
Furui Feng,Xinyu Li,Wenbin Wang,Mengmeng Dou,Silu Li,Xin Jin,Yaojuan Chu,Lin Zhu
出处
期刊:Biochemical and Biophysical Research Communications [Elsevier]
卷期号:: 150651-150651
标识
DOI:10.1016/j.bbrc.2024.150651
摘要

Multiple sclerosis (MS) is an inflammatory demyelination neurodegenerative disease of the central nervous system (CNS). Ferroptosis has been implicated in a range of brain disorders, and iron-loaded microglia are frequently found in affected brain regions. However, the molecular mechanisms linking ferroptosis with MS have not been well-defined. The present study seeks to bridge this gap and investigate the impact of matrine (MAT), an herbal medicine with immunomodulatory capacities, on the regulation of oxidative stress and ferroptosis in the CNS of mice with experimental autoimmune encephalomyelitis (EAE), an animal model of MS. CNS of EAE mice contained elevated levels of ferroptosis-related molecules, e.g., MDA, LPCAT3 and PTGS2, but decreased expression of antioxidant molecules, including GSH and SOD, GPX4 and SLC7A11. This pathogenic process was reversed by MAT treatment, together with significant reduction of disease severity and CNS inflammatory demyelination. Furthermore, the expression of PTGS2 and LOX was largely increased in microglia of EAE mice, accompanied with increased production of IL-6 and TNF-α, indicating a proinflammatory phenotype of microglia that undergo oxidative stress/ferroptosis, and their expression was significantly reduced after MAT treatment. Together, our results indicate that ferroptosis/inflammation plays an important role in the pathogenesis of CNS autoimmunity, and inhibiting ferroptosis-induced microglial activation/inflammation could be a novel mechanism underlying the therapeutic effects of MAT on CNS inflammatory demyelination in EAE.
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