Leutcha Peron Bosco, Mamoudou Hamadou, Nganso Ditchou Yves Oscar, Ansari Siddique Akber, Amang À Ngnoung Gabrielle Ange, Mujwar Somdutt, Domga Taiga Jean, Agrawal Mohit, Messah Nembot Gertrude, Boubakari Hamadou Seyni, Meli Lannang Alain, Siwe Noundou Xavier
Department of Chemistry, Faculty of Science, University of Maroua, P.O. Box 814, Maroua, Cameroon.
Department of Biological Sciences, Biochemistry, Bioinformatics, and Bioactive Compounds Research Unit, Faculty of Science, University of Maroua, P.O. Box 814, Maroua, Cameroon.
Biomed Pharmacother. 2025 Jan;182:117768. doi: 10.1016/j.biopha.2024.117768. Epub 2024 Dec 17.
The investigation of the methanol extract of the flowers of Jacaranda mimosifolia led to the isolation and characterisation of fourteen secondary metabolites (1-14) by the means of chromatographic and spectroscopic analysis. These compounds include eight flavonoids sorted as two flavonols (1-2), three flavones (3, 7-8), and three isoflavones (4, 9-10), two glucoiridoids (5-6), and four triterpenoids sorted as one oleanane (11), one hopane (12), and two lupane (13-14). The in vitro antioxidant potential of all the isolated compounds was evaluated using the ABTS- and FRAP- methods, which demonstrated concentration-dependent activity. Chloroflavonin A (1) and 4',5,7-trihydroxyflavone (2) demonstrated exceptional antioxidant activity, with scavenging rates of 98.63 % and 97.89 %, respectively, at a concentration of 300 μg/mL, and also showed strong ferric-reducing antioxidant power. Chloroflavonin A (1) demonstrated the most potent dual inhibitory effects on Cyclooxigenase-2 (COX-2) and NADPH-Oxidase-5 (NOX-5) enzymes, with binding affinities of -9.7 and -8.2 kcal/mol, respectively, indicating its potential as a strong anti-inflammatory compound. The molecular dynamics simulation, conducted with the Desmond v3.6, demonstrated the stability of the various complexes within the biological system. The findings indicate that compounds derived from Jacaranda mimosifolia may serve as potential therapeutic agents for the management of inflammation and oxidative stress.
对蓝花楹花朵甲醇提取物的研究通过色谱和光谱分析手段,分离并鉴定出了14种次生代谢产物(1 - 14)。这些化合物包括8种黄酮类化合物,分为2种黄酮醇(1 - 2)、3种黄酮(3、7 - 8)和3种异黄酮(4、9 - 10),2种葡糖环烯醚萜(5 - 6),以及4种三萜类化合物,分为1种齐墩果烷(11)、1种何帕烷(12)和2种羽扇豆烷(13 - 14)。使用ABTS法和FRAP法对所有分离出的化合物的体外抗氧化潜力进行了评估,结果表明其具有浓度依赖性活性。氯黄酮A(1)和4',5,7 - 三羟基黄酮(2)表现出卓越的抗氧化活性,在浓度为300μg/mL时,清除率分别为98.63%和97.89%,并且还表现出强大的铁还原抗氧化能力。氯黄酮A(1)对环氧化酶 - 2(COX - 2)和NADPH氧化酶 - 5(NOX - 5)酶表现出最有效的双重抑制作用,结合亲和力分别为 - 9.7和 - 8.2 kcal/mol,表明其作为一种强效抗炎化合物的潜力。使用Desmond v3.6进行的分子动力学模拟证明了生物系统中各种复合物的稳定性。研究结果表明,源自蓝花楹的化合物可能作为治疗炎症和氧化应激的潜在治疗剂。