Department of Pharmacology, Piramal Life Sciences Limited, Mumbai-400063, Maharashtra, India.
Eur J Pharmacol. 2011 Apr 25;657(1-3):41-50. doi: 10.1016/j.ejphar.2011.01.050. Epub 2011 Feb 4.
Microarray technology can be used to study the molecular mechanisms of new chemical entities with the aim to develop effective therapeutics. 7-Hydroxyfrullanolide (7HF) is a sesquiterpene lactone that was found to be efficacious in multiple animal models of inflammation by suppression of pro-inflammatory cytokines; however, its molecular mechanism of action remains unclear. We investigated the effects of 7HF on lipopolysaccharide (LPS)-stimulated human peripheral blood mononuclear cells using microarray-based gene expression studies and explored the molecular targets affected. Gene expression profiles and pathway analysis revealed that 7HF potently suppressed multiple inflammatory pathways induced by LPS. More importantly, 7HF was found to inhibit NF-κB related transcripts. These transcripts were further validated using freshly isolated synovial cells from rheumatoid arthritis patients, thus clinically validating our findings. Cell-based imaging and subsequent Western blot analysis demonstrated that 7HF inhibited the translocation of NF-κB into the nucleus by directly inhibiting the phosphorylation of IKK-β. Since the transcription of adhesion molecules is regulated by NF-κB, further investigation showed that 7HF dose-dependently suppressed ICAM-1, VCAM-1 and E-selectin expression on LPS-stimulated endothelial cells as well as inhibited the adhesion of monocytes to LPS-stimulated endothelial cells. Taken together, our results reveal that 7HF possesses NF-κB inhibitory potential and suggest a likely molecular mechanism of its anti-inflammatory activity.
微阵列技术可用于研究新化学实体的分子机制,旨在开发有效的治疗方法。7-羟基瑞香内酯(7HF)是一种倍半萜内酯,通过抑制促炎细胞因子,在多种炎症动物模型中被证明是有效的;然而,其作用机制尚不清楚。我们使用基于微阵列的基因表达研究,研究了 7HF 对脂多糖(LPS)刺激的人外周血单核细胞的影响,并探讨了受影响的分子靶标。基因表达谱和通路分析表明,7HF 能强烈抑制 LPS 诱导的多种炎症通路。更重要的是,发现 7HF 抑制与 NF-κB 相关的转录本。使用来自类风湿关节炎患者的新鲜分离的滑膜细胞进一步验证了这些转录本,从而验证了我们的发现具有临床意义。基于细胞的成像和随后的 Western blot 分析表明,7HF 通过直接抑制 IKK-β的磷酸化来抑制 NF-κB 向核内易位。由于粘附分子的转录受 NF-κB 调节,进一步的研究表明,7HF 可剂量依赖性地抑制 LPS 刺激的内皮细胞上 ICAM-1、VCAM-1 和 E-选择素的表达,并抑制单核细胞与 LPS 刺激的内皮细胞的粘附。总之,我们的结果表明 7HF 具有 NF-κB 抑制潜力,并提示其抗炎活性的一种可能的分子机制。