Khamto Nopawit, Chaichuang Lada, Rithchumpon Puracheth, Phupong Worrapong, Bhoopong Phuangthip, Tateing Suriya, Pompimon Wilart, Semakul Natthawat, Chomsri Ni-Orn, Meepowpan Puttinan
Department of Chemistry, Faculty of Science, Chiang Mai University 239 Huay Kaew Road Chiang Mai 50200 Thailand
Graduate School, Chiang Mai University 239 Huay Kaew Road Chiang Mai 50200 Thailand.
RSC Adv. 2021 Sep 22;11(50):31433-31447. doi: 10.1039/d1ra05445g. eCollection 2021 Sep 21.
2',4'-Dihydroxy-6'-methoxy-3',5'-dimethylchalcone (DMC, 1) was isolated from seeds of A.Cunn. ex DC. exhibiting intriguing biological activities. Herein, thirty three DMC derivatives including 4'--monosubstituted-DMC (2), 7--acylated-4-hydroxycoumarin derivatives (3), stilbene-coumarin derivatives (4), 2',4'-disubstituted-DMC (5), and flavanone derivatives (6), were synthesised through acylation, alkylations, and sulfonylation. These semi-synthetic DMC derivatives were evaluated for cytotoxicity against six carcinoma cell lines. It was found that most derivatives exhibited higher cytotoxicity than DMC. In particular, 4'--caproylated-DMC (2b) and 4'--methylated-DMC (2g) displayed the strongest cytotoxicity against SH-SY5Y with IC values of 5.20 and 7.52 μM, respectively. Additionally, 4'--benzylated-DMC (2h) demonstrated the strongest cytotoxicity against A-549 and FaDu with IC values of 9.99 and 13.98 μM, respectively. Our structure-activity relationship (SAR) highlights the importance of 2'-OH and the derivatisation pattern of 4'-OH. Furthermore, molecular docking simulation studies shed further light on how these bioactive compounds interact with cyclin-dependent kinase 2 (CDK2).
2',4'-二羟基-6'-甲氧基-3',5'-二甲基查尔酮(DMC,1)是从A.Cunn. ex DC.的种子中分离得到的,具有有趣的生物活性。在此,通过酰化、烷基化和磺酰化反应合成了33种DMC衍生物,包括4'-单取代-DMC(2)、7-酰化-4-羟基香豆素衍生物(3)、芪-香豆素衍生物(4)、2',4'-二取代-DMC(5)和黄烷酮衍生物(6)。对这些半合成的DMC衍生物进行了针对六种癌细胞系的细胞毒性评估。发现大多数衍生物表现出比DMC更高的细胞毒性。特别是,4'-己酰化-DMC(2b)和4'-甲基化-DMC(2g)对SH-SY5Y显示出最强的细胞毒性,IC值分别为5.20和7.52 μM。此外,4'-苄基化-DMC(2h)对A-549和FaDu显示出最强的细胞毒性,IC值分别为9.99和13.98 μM。我们的构效关系(SAR)突出了2'-OH和4'-OH衍生化模式的重要性。此外,分子对接模拟研究进一步揭示了这些生物活性化合物如何与细胞周期蛋白依赖性激酶2(CDK2)相互作用。