Lithospermic acid targeting heat shock protein 90 attenuates LPS-induced inflammatory response via NF-кB signalling pathway in BV2 microglial cells.

IF 3.3 4区 医学 Q3 IMMUNOLOGY
Jie Guo, Chen-Guang Li, Feng-Yi Mai, Jing-Rong Liang, Ze-Hao Chen, Jiao Luo, Ming-Chao Zhou, Yu-Long Wang, Wen-Tao Yang
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引用次数: 0

Abstract

Microglia function as a vital constituent in the maintenance of brain homeostasis. Aberrant microglial activation, however, may contribute to neurodegenerative diseases. Lithospermic acid (LA) is a plant-derived polycyclic phenolic carboxylic acid isolated from Salvia miltiorrhiza. The present study investigated the potential effects of lithospermic acid on LPS-induced neuroinflammation in BV2 microglial cells and determined the mechanism of action of this compound. Cells were pre-treated with lithospermic acid for 1 h and incubated with LPS for 24 h. qPCR, immunofluorescence, and immunoblot assays were used to determine the expression of iNOS, COX2, NF-κB p65, and HSP90 expression. ELISA was employed to measure the production of pro-inflammatory cytokines. Lithospermic acid dramatically reduced LPS-stimulated cell migration and decreased NF-κB p65 nuclear translocation. Furthermore, lithospermic acid also markedly decreased the production of pro-inflammatory cytokines, including IL-6, IL-1β, and TNF-α in a dose-dependent manner. Additionally, lithospermic acid inhibited NO and PGE2 production in response to LPS, and it also inhibited the expression of iNOS and COX2 in a dose-dependent manner. Molecular docking and experimental verification have demonstrated that lithospermic acid inhibits the activity and expression of HSP90. Small interfering RNA knockdown of HSP90 expression, which abrogated LPS-induced inflammation. These findings suggest that the lithospermic acid targeting HSP90 attenuates LPS-induced inflammatory response via the NF-κB signalling pathway in BV2 microglial cells. Collectively, lithospermic acid may offer therapeutic benefits for neurodegenerative disorders associated with microglial activation and could serve as a potential inhibitor/agent for the treatment of neuroinflammation.

以热休克蛋白90为靶点的石子酸可通过NF-кB信号通路减弱脂多糖诱导的BV2小胶质细胞炎症反应。
小胶质细胞是维持大脑稳态的重要组成部分。然而,异常的小胶质细胞激活可能导致神经退行性疾病。紫草酸(Lithospermic acid, LA)是从丹参中分离得到的植物源性多环酚类羧酸。本研究探讨石精酸对脂多糖诱导的BV2小胶质细胞神经炎症的潜在作用,并确定其作用机制。细胞经石精酸预处理1 h, LPS孵育24 h,采用qPCR、免疫荧光和免疫印迹法检测iNOS、COX2、NF-κB p65和HSP90的表达。ELISA法检测促炎细胞因子的产生。Lithospermic acid显著降低lps刺激的细胞迁移和NF-κB p65核易位。此外,石精酸还以剂量依赖的方式显著降低促炎细胞因子的产生,包括IL-6、IL-1β和TNF-α。此外,紫石籽酸在LPS作用下抑制NO和PGE2的产生,并以剂量依赖性的方式抑制iNOS和COX2的表达。分子对接和实验验证表明,石子酸抑制HSP90的活性和表达。小干扰RNA敲低HSP90表达,消除脂多糖诱导的炎症。这些发现表明,靶向HSP90的石精酸通过NF-κB信号通路减弱了脂多糖诱导的BV2小胶质细胞炎症反应。总的来说,石精酸可能为与小胶质细胞激活相关的神经退行性疾病提供治疗益处,并可能作为治疗神经炎症的潜在抑制剂/药物。
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来源期刊
Immunologic Research
Immunologic Research 医学-免疫学
CiteScore
6.90
自引率
0.00%
发文量
83
审稿时长
6-12 weeks
期刊介绍: IMMUNOLOGIC RESEARCH represents a unique medium for the presentation, interpretation, and clarification of complex scientific data. Information is presented in the form of interpretive synthesis reviews, original research articles, symposia, editorials, and theoretical essays. The scope of coverage extends to cellular immunology, immunogenetics, molecular and structural immunology, immunoregulation and autoimmunity, immunopathology, tumor immunology, host defense and microbial immunity, including viral immunology, immunohematology, mucosal immunity, complement, transplantation immunology, clinical immunology, neuroimmunology, immunoendocrinology, immunotoxicology, translational immunology, and history of immunology.
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