School of Pharmacy, Inner Mongolia Medical University, 010110 Hohhot, Inner Mongolia Autonomous Region, China.
School of Pharmacy, Inner Mongolia Medical University, 010110 Hohhot, Inner Mongolia Autonomous Region, China.
Bioorg Med Chem Lett. 2023 Nov 15;96:129539. doi: 10.1016/j.bmcl.2023.129539. Epub 2023 Nov 2.
Inflammation is the initial biological reaction of the immune system to various stimuli such as infection, injury, or irritation. Extensive research has demonstrated that a growing array of diseases are triggered by inflammatory mechanisms. Currently, anti-inflammatory drugs are widely utilized in clinical practice due to their therapeutic advantages; however, the potential side effects cannot be ignored by us. In our work, a series of amide compounds with chromones as the parent nucleus were designed and synthesized using the principle of colligated drug design. The results of the biological evaluation indicated that four compounds exhibited lower EC values compared to the positive drug ibuprofen. Notably, compound 5-9 showed optimal inhibitory activity (EC = 5.33 ± 0.57 μM) against the production of nitric oxide (NO) induced by lipopolysaccharide (LPS) in RAW264.7 cells. Structure-activity relationships (SAR) showed that the presence of electron-withdrawing groups at positions 5 and 8, or electron-donating groups at positions 6 and 7 of the parent nucleus of the chromones can enhance the anti-inflammatory activity of the chromones. The molecular docking studies predicted the mode of interaction between the compounds and protein. Additionally, these studies have demonstrated that the amide bond is the key radical to the anti-inflammatory effect. Based on the summary of the aforementioned studies, it can be inferred that compound 5-9 exhibit potential as an anti-inflammatory drug that deserves further investigation.
炎症是免疫系统对感染、损伤或刺激等各种刺激的初始生物反应。大量研究表明,越来越多的疾病是由炎症机制引发的。目前,由于具有治疗优势,抗炎药物在临床实践中得到广泛应用;然而,我们不能忽视其潜在的副作用。在我们的工作中,根据拼合药物设计的原理,设计并合成了一系列以色酮为母核的酰胺类化合物。生物评价结果表明,与阳性药物布洛芬相比,有 4 种化合物的 EC 值较低。值得注意的是,化合物 5-9 对脂多糖(LPS)诱导的 RAW264.7 细胞中一氧化氮(NO)的产生表现出最佳的抑制活性(EC=5.33±0.57μM)。构效关系(SAR)表明,色酮母体核的 5 位和 8 位有吸电子基团,或 6 位和 7 位有供电子基团,可以增强色酮的抗炎活性。分子对接研究预测了化合物与蛋白质的相互作用模式。此外,这些研究表明酰胺键是抗炎作用的关键基团。基于上述研究的总结,可以推断化合物 5-9 具有作为抗炎药物的潜力,值得进一步研究。