Icariside II通过抑制TNIP2/NF-κB通路减轻软骨细胞炎症损伤。

IF 1.8 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Cell Biochemistry and Biophysics Pub Date : 2025-01-07 DOI:10.1007/s12013-024-01635-9
Jiajun Mei, Hongkui Ke, Junsong Zhu
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引用次数: 0

摘要

Icariside II对多种疾病具有保护作用;然而,其对骨关节炎(OA)的具体作用尚不清楚。因此,在本研究中,我们旨在研究icariside II在OA体外模型中的作用,并分析其作用机制。我们先用白细胞介素(IL)-1β治疗人软骨细胞系(CHON-001),然后用不同浓度的icariside II治疗,建立体外OA模型。采用甲基噻唑四氮唑法测定细胞活力,采用相应试剂盒测定细胞乳酸脱氢酶(LDH)释放水平。采用酶联免疫吸附法检测肿瘤坏死因子(TNF)-α、IL-6、IL-8水平。流式细胞术检测细胞凋亡。通过逆转录-定量聚合酶链反应和western blotting分析凋亡相关蛋白表达水平和tnfaip3相互作用蛋白2 (TNIP2)/核因子(NF)-κB信号通路。此外,我们利用TNIP2小干扰RNA (siRNA)检测TNIP2/NF-κB通路是否影响icariside II对OA的作用。结果表明,Icariside II对CHON-001细胞没有明显的毒性作用。抑制il -1β诱导的细胞凋亡和LDH水平升高,增强炎症反应。此外,icariside II逆转了il -1β-诱导的TNIP2水平下降和NF-κB磷酸化升高。TNIP2- sirna显示TNIP2/NF-κB信号通路影响icariside II对OA的缓解作用。综上所述,我们的研究结果表明,icariside II通过增加TNIP2表达和抑制NF-κB通路激活来减轻il -1β诱导的软骨细胞炎症损伤,突出了其治疗OA的潜力。
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Icariside II Alleviates Chondrocyte Inflammatory Injury by Inhibiting the TNIP2/NF-κB Pathway.

Icariside II exerts protective effects against various diseases; however, its specific effects on osteoarthritis (OA) remain unclear. Therefore, in this study, we aimed to investigate the effects of icariside II in an in vitro model of OA and analyze its action mechanisms. We established an in vitro OA model by treating a human chondrocyte cell line (CHON-001) with interleukin (IL)-1β, followed by treatment with different concentrations of icariside II. Cell viability was measured using the methyl thiazolyl tetrazolium assay, and the level of lactate dehydrogenase (LDH) released from cells was determined using the appropriate kit. Tumor necrosis factor (TNF)-α, IL-6, and IL-8 levels were determined via enzyme-linked immunosorbent assay. Flow cytometry was used to assess apoptosis. Apoptosisrelated protein expression levels and TNFAIP3-interacting protein 2 (TNIP2)/nuclear factor (NF)-κB signaling pathway were analyzed via reverse transcription-quantitative polymerase chain reaction and western blotting. Furthermore, TNIP2-small interfering RNA (siRNA) was used to determine whether the TNIP2/NF-κB pathway influences the effects of icariside II on OA. Results indicated that Icariside II did not exert any significant toxic effects on CHON-001 cells. It inhibited IL-1β-induced apoptosis and increase in LDH levels and enhanced the inflammatory response. Additionally, icariside II reversed the IL-1β-induced decrease in TNIP2 levels and increase in NF-κB phosphorylation. TNIP2-siRNA revealed that the TNIP2/NF-κB signaling pathway influenced the alleviating effects of icariside II on OA. In conclusion, our results revealed that icariside II attenuated IL-1β-induced inflammatory injury in chondrocytes by increasing TNIP2 expression and inhibiting NF-κB pathway activation, highlighting its therapeutic potential for OA.

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来源期刊
Cell Biochemistry and Biophysics
Cell Biochemistry and Biophysics 生物-生化与分子生物学
CiteScore
4.40
自引率
0.00%
发文量
72
审稿时长
7.5 months
期刊介绍: Cell Biochemistry and Biophysics (CBB) aims to publish papers on the nature of the biochemical and biophysical mechanisms underlying the structure, control and function of cellular systems The reports should be within the framework of modern biochemistry and chemistry, biophysics and cell physiology, physics and engineering, molecular and structural biology. The relationship between molecular structure and function under investigation is emphasized. Examples of subject areas that CBB publishes are: · biochemical and biophysical aspects of cell structure and function; · interactions of cells and their molecular/macromolecular constituents; · innovative developments in genetic and biomolecular engineering; · computer-based analysis of tissues, cells, cell networks, organelles, and molecular/macromolecular assemblies; · photometric, spectroscopic, microscopic, mechanical, and electrical methodologies/techniques in analytical cytology, cytometry and innovative instrument design For articles that focus on computational aspects, authors should be clear about which docking and molecular dynamics algorithms or software packages are being used as well as details on the system parameterization, simulations conditions etc. In addition, docking calculations (virtual screening, QSAR, etc.) should be validated either by experimental studies or one or more reliable theoretical cross-validation methods.
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