PeQuiM-Laboratory of Research in Medicinal Chemistry, Federal University of Alfenas, Jovino Fernandes Sales Avenue, 2600, Alfenas, MG 37130-000, Brazil.
Institute of Biomedical Sciences, Federal University of Alfenas, Gabriel Monteiro da Silva Street, 700, Alfenas, MG 37130-000, Brazil.
Toxicol In Vitro. 2018 Aug;50:75-85. doi: 10.1016/j.tiv.2018.02.020. Epub 2018 Mar 2.
Curcumin (1) and resveratrol (2) are bioactive natural compounds that display wide pharmacological properties, including antitumor activity. However, their clinical application has been limited due to their low solubility and bioavailability. Nevertheless, independent studies have considered these compounds as interesting prototypes for developing new chemical structures useful for anticancer therapy. Here in, we report the synthesis of novel curcumin-like hydrazide analogues (3a and 3b), and a series of curcumin-resveratrol hybrid compounds (4a-f), and the evaluation of their cytotoxic potential on three tumor cell lines MCF-7 (breast), A549 (lung), and HepG2 (liver). Cell viability was significantly reduced in all tested cell lines when compounds 4c-4e were used. The IC values for these compounds on MCF-7 cells were lower than those for curcumin, resveratrol, or curcumin combined with resveratrol. We evidenced that 4c promoted a drastic increase of G2/M population. The accumulation of cells in mitosis onset in treated cultures was due to, at least in part, the ability of 4c to modulate nuclear kinase proteins, which orchestrate important events in mitosis progression. We have also observed significant reduction of the relative RNAm abundance of CCNB1, PLK1, AURKA, AURKB in samples treated with 4c, with concomitant increase of CDKN1A (p21). Thus, compound 4c is a promising multi-target antitumor agent that should be considered for further in vivo studies.
姜黄素(1)和白藜芦醇(2)是具有广泛药理活性的生物活性天然化合物,包括抗肿瘤活性。然而,由于它们的低溶解度和生物利用度,其临床应用受到限制。尽管如此,独立的研究已经将这些化合物视为开发用于癌症治疗的新化学结构的有趣原型。在这里,我们报告了新型姜黄素类酰肼类似物(3a 和 3b)和一系列姜黄素-白藜芦醇杂合化合物(4a-f)的合成,并评估了它们对三种肿瘤细胞系 MCF-7(乳腺)、A549(肺)和 HepG2(肝)的细胞毒性潜力。当使用化合物 4c-4e 时,所有测试的细胞系中的细胞活力均显著降低。这些化合物对 MCF-7 细胞的 IC 值均低于姜黄素、白藜芦醇或姜黄素与白藜芦醇的组合。我们证明了 4c 促进了 G2/M 群体的急剧增加。处理培养物中细胞在有丝分裂起始时的积累至少部分归因于 4c 调节核激酶蛋白的能力,这些蛋白协调有丝分裂进程中的重要事件。我们还观察到用 4c 处理的样品中 CCNB1、PLK1、AURKA、AURKB 的相对 RNAm 丰度显着降低,同时 CDKN1A(p21)增加。因此,化合物 4c 是一种有前途的多靶抗肿瘤剂,应考虑进一步进行体内研究。