Kim Eunji, Yang Woo Seok, Kim Ji Hye, Park Jae Gwang, Kim Han Gyung, Ko Jaeyoung, Hong Yong Deog, Rho Ho Sik, Shin Song Seok, Sung Gi-Ho, Cho Jae Youl
Department of Genetic Engineering, Sungkyunkwan University, Suwon 440-746, Republic of Korea.
Medical Beauty Research Institute, AmorePacific R&D Center, Yongin 446-729, Republic of Korea.
Mediators Inflamm. 2014;2014:405158. doi: 10.1155/2014/405158. Epub 2014 Mar 23.
In this study, we aimed to examine the cellular and molecular mechanisms of lancemaside A from Codonopsis lanceolata (Campanulaceae) in the inflammatory responses of monocytes (U937 cells) and macrophages (RAW264.7 cells). Lancemaside A significantly suppressed the inflammatory functions of lipopolysaccharide- (LPS-) treated RAW264.7 cells by suppressing the production of nitric oxide (NO), the expression of the NO-producing enzyme inducible NO synthase (iNOS), the upregulation of the costimulatory molecule CD80, and the morphological changes induced by LPS exposure. In addition, lancemaside A diminished the phagocytic activity of RAW264.7 cells and boosted the neutralizing capacity of these cells when treated with the radical generator sodium nitroprusside (SNP). Interestingly, lancemaside A strongly blocked the adhesion activity of RAW264.7 cells to plastic culture plates, inhibited the cell-cell and cell-fibronectin (FN) adhesion of U937 cells that was triggered by treatment with an anti-β1-integrin (CD29) antibody and immobilized FN, respectively. By evaluating the activation of various intracellular signaling pathways and the levels of related nuclear transcription factors, lancemaside A was found to block the activation of inhibitor of κB kinase (IKK) and p65/nuclear factor- (NF-) κB. Taken together, our findings strongly suggest that the anti-inflammatory function of lancemaside A is the result of its strong antioxidative and IKK/NF-κB inhibitory activities.
在本研究中,我们旨在探究轮叶党参(桔梗科)中的轮叶党参苷A在单核细胞(U937细胞)和巨噬细胞(RAW264.7细胞)炎症反应中的细胞和分子机制。轮叶党参苷A通过抑制一氧化氮(NO)的产生、产生NO的诱导型NO合酶(iNOS)的表达、共刺激分子CD80的上调以及脂多糖(LPS)暴露诱导的形态变化,显著抑制了LPS处理的RAW264.7细胞的炎症功能。此外,轮叶党参苷A降低了RAW264.7细胞的吞噬活性,并在用自由基发生器硝普钠(SNP)处理时增强了这些细胞的中和能力。有趣的是,轮叶党参苷A强烈阻断了RAW264.7细胞与塑料培养板的黏附活性,分别抑制了抗β1整合素(CD29)抗体处理和固定化纤连蛋白(FN)引发的U937细胞的细胞间和细胞与FN的黏附。通过评估各种细胞内信号通路的激活以及相关核转录因子的水平,发现轮叶党参苷A可阻断κB激酶抑制剂(IKK)和p65/核因子-(NF-)κB的激活。综上所述,我们的研究结果强烈表明,轮叶党参苷A的抗炎功能是其强大的抗氧化和IKK/NF-κB抑制活性的结果。