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一种新型的丝切蛋白抑制剂对铁诱导的小胶质细胞丝切蛋白激活和炎症的抑制作用

Inhibition of iron-induced cofilin activation and inflammation in microglia by a novel cofilin inhibitor.

作者信息

Shehjar Faheem, James Antonisamy William, Mahajan Reetika, Shah Zahoor A

机构信息

Department of Medicinal and Biological Chemistry, College of Pharmacy and Pharmaceutical Sciences, Toledo, Ohio, USA.

出版信息

J Neurochem. 2025 Feb;169(2):e16260. doi: 10.1111/jnc.16260. Epub 2024 Nov 18.

Abstract

Neuroinflammatory conditions linked to iron dysregulation pose significant challenges in neurodegenerative diseases. Iron-loaded microglia are observed in the brains of patients with various neuroinflammatory conditions, yet how iron overload affects microglial function and contributes to various neuroinflammatory processes is poorly understood. This in vitro study elucidates the relationship between excess iron, cofilin activation, and microglial function, shedding light on potential therapeutic avenues. Iron overload was induced in Human Microglial Clone 3 cells using ferrous sulfate, and the expressions of ferritin heavy chain, ferritin light chain, divalent metal transporter 1, cofilin, p-cofilin, nuclear factor-κB (NF-κB), and various inflammatory cytokines were analyzed using real-time quantitative polymerase chain reaction, immunocytochemistry, Western blotting, and enzyme-linked immunosorbent assay. Results revealed a notable increase in cofilin, NF-κB, and inflammatory cytokine expression levels following excess iron exposure. Moreover, treatment with deferoxamine (DFX), a known iron chelator, and a novel cofilin inhibitor (CI) synthesized in our laboratory demonstrate a mitigating effect on iron-induced cofilin expression. Furthermore, both DFX and CI exhibit promising outcomes in mitigating the inflammatory consequences of excess iron, including the expression of pro-inflammatory cytokines and NF-κB activation. These findings suggest that both DFX and CI can potentially alleviate microglia-induced neuroinflammation by targeting both iron dysregulation and cofilin-mediated pathways. Overall, this study provides valuable insights into iron-induced cofilin activation and microglial activation, offering avenues for potential targeted therapies for neuroinflammatory conditions associated with iron and cofilin dysregulation in neurodegenerative diseases.

摘要

与铁调节异常相关的神经炎症性疾病在神经退行性疾病中构成了重大挑战。在患有各种神经炎症性疾病的患者大脑中观察到铁负载的小胶质细胞,但铁过载如何影响小胶质细胞功能并促成各种神经炎症过程仍知之甚少。这项体外研究阐明了过量铁、丝切蛋白激活和小胶质细胞功能之间的关系,为潜在的治疗途径提供了线索。使用硫酸亚铁在人小胶质细胞克隆3细胞中诱导铁过载,并通过实时定量聚合酶链反应、免疫细胞化学、蛋白质免疫印迹和酶联免疫吸附测定分析铁蛋白重链、铁蛋白轻链、二价金属转运体1、丝切蛋白、磷酸化丝切蛋白、核因子-κB(NF-κB)和各种炎性细胞因子的表达。结果显示,过量铁暴露后丝切蛋白、NF-κB和炎性细胞因子表达水平显著增加。此外,用已知的铁螯合剂去铁胺(DFX)和我们实验室合成的新型丝切蛋白抑制剂(CI)进行处理,对铁诱导的丝切蛋白表达具有缓解作用。此外,DFX和CI在减轻过量铁的炎症后果方面均显示出有前景的结果,包括促炎细胞因子的表达和NF-κB激活。这些发现表明,DFX和CI都有可能通过靶向铁调节异常和丝切蛋白介导的途径来减轻小胶质细胞诱导的神经炎症。总体而言,这项研究为铁诱导的丝切蛋白激活和小胶质细胞激活提供了有价值的见解,为神经退行性疾病中与铁和丝切蛋白调节异常相关的神经炎症性疾病的潜在靶向治疗提供了途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cdf/11808637/4cdeb953b782/JNC-169-0-g002.jpg

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