Natural Product Chemistry and Pharmacology Programme, Medicinal Plants and Horticulture Resources Division, Institute of Bioresources and Sustainable Development, (An Autonomous Institute of Department of Biotechnology, Government of India), Takyelpat, Imphal, 795001, Manipur, India.
Bioinformatics and Bioresources Database Division, Institute of Bioresources and Sustainable Development, (An Autonomous Institute of Department of Biotechnology, Government of India), Takyelpat, Imphal, 795001, Manipur, India.
Sci Rep. 2023 Aug 21;13(1):13612. doi: 10.1038/s41598-023-37729-2.
In this study, we investigated whether zerumbone (ZBN), ellagic acid (ELA) and quercetin (QCT), the plant-derived components, can modulate the role of COX-3 or cytokines liable in arthritic disorder. Initially, the effect of ZBN, ELA, and QCT on inflammatory process was investigated using in-vitro models. In-silico docking and molecular dynamics study of these molecules with respective targets also corroborate with in-vitro studies. Further, the in-vivo anti-arthritic potential of these molecules in Complete Freund's adjuvant (CFA)-induced arthritic rats was confirmed. CFA increases in TNF-α and IL-1β levels in the arthritic control animals were significantly (***p < 0.001) attenuated in the ZBN- and ELA-treated animals. CFA-induced attenuation in IL-10 levels recovered under treatment. Moreover, ELA attenuated CFA-induced upregulation of COX-3 and ZBN downregulated CFA-triggered NFκB expression in arthritic animals. The bonding patterns of zerumbone in the catalytic sites of targets provide a useful hint in designing and developing suitable derivatives that can be used as a potential drug. To our best knowledge, the first time we are reporting the role of COX-3 in the treatment of arthritic disorders which could provide a novel therapeutic approach for the treatment of inflammatory disorders.
在这项研究中,我们研究了植物源性成分姜烯酮(ZBN)、鞣花酸(ELA)和槲皮素(QCT)是否可以调节 COX-3 或细胞因子在关节炎疾病中的作用。最初,我们使用体外模型研究了 ZBN、ELA 和 QCT 对炎症过程的影响。这些分子与各自靶标的计算机对接和分子动力学研究也与体外研究相符。此外,我们还证实了这些分子在完全弗氏佐剂(CFA)诱导的关节炎大鼠体内的抗关节炎潜力。在关节炎对照动物中,CFA 增加了 TNF-α 和 IL-1β 水平,而在 ZBN 和 ELA 治疗的动物中,这些水平显著(***p<0.001)降低。在治疗下,CFA 诱导的 IL-10 水平降低得到恢复。此外,ELA 减轻了 CFA 诱导的 COX-3 上调,而 ZBN 下调了关节炎动物中 CFA 触发的 NFκB 表达。姜烯酮在靶标催化部位的结合模式为设计和开发可作为潜在药物使用的合适衍生物提供了有用的线索。据我们所知,这是我们首次报道 COX-3 在治疗关节炎疾病中的作用,这可能为治疗炎症性疾病提供一种新的治疗方法。