State Key Laboratory of Functions and Applications of Medicinal Plants, Guizhou Medical University, Guiyang 550014, China.
The Key Laboratory of Chemistry for Natural Products of Guizhou Province and Chinese Academy of Sciences, Guiyang 550014, China.
Molecules. 2019 May 6;24(9):1749. doi: 10.3390/molecules24091749.
Flavonoids are well-characterized polyphenolic compounds with pharmacological and therapeutic activities. However, most flavonoids have not been developed into clinical drugs, due to poor bioavailability. Herein, we report a strategy to increase the drugability of flavonoids by constructing C(sp)-O bonds and stereo- as well as regioselective alkenylation of hydroxyl groups of flavonoids with ethyl-2,3-butadienoate allenes. Twenty-three modified flavonoid derivatives were designed, synthesized, and evaluated for their anti-cancer activities. The results showed that compounds , , , , and exhibited better in vitro inhibitory activity against several cancer cell lines than their precursors. Preliminary structure-activity relationship studies indicated that, in most of the cancer cell lines evaluated, the substitution on position 7 was essential for increasing cytotoxicity. The results of this study might facilitate the preparation or late-stage modification of complex flavonoids as anti-cancer drug candidates.
类黄酮是具有药理学和治疗活性的典型多酚类化合物。然而,由于生物利用度差,大多数类黄酮尚未开发成临床药物。在此,我们报告了一种通过构建 C(sp)-O 键和立体及区域选择性烯丙基化来提高类黄酮药物可用性的策略,该策略利用了乙基-2,3-丁二烯酸酯丙二烯。设计、合成了 23 种改性黄酮类衍生物,并对其抗癌活性进行了评价。结果表明,化合物 、 、 、 、 对几种癌细胞系的体外抑制活性优于其前体。初步的构效关系研究表明,在所评估的大多数癌细胞系中,在 7 位取代对于增加细胞毒性是必需的。这项研究的结果可能有助于复杂类黄酮作为抗癌药物候选物的制备或后期修饰。