Department of Organic Chemistry, Faculty of Pharmacy, Poznan University of Medical Sciences, Collegium Pharmaceuticum 2 (CP.2), Rokietnicka Str. 3, 60-806 Poznan, Poland.
Department of Pharmacognosy and Biomaterials, Faculty of Pharmacy, Poznan University of Medical Sciences, Collegium Pharmaceuticum 1 (CP.1), Rokietnicka Str. 3, 60-806 Poznan, Poland.
Int J Mol Sci. 2024 Jun 26;25(13):6989. doi: 10.3390/ijms25136989.
The present work aimed to obtain a set of oleanolic acid derivatives with a high level of cytotoxic and antioxidant activities and a low level of toxicity by applying an economical method. Oleanolic acid was alkylated with α,ω-dihalogenoalkane/α,ω-dihalogenoalkene to obtain 14 derivatives of dimer structure. All of the newly obtained compounds were subjected to QSAR computational analysis to evaluate the probability of the occurrence of different types of pharmacological activities depending on the structure of the analysed compound. All dimers were tested for cytotoxicity activity and antioxidant potential. The cytotoxicity was tested on the SKBR-3, SKOV-3, PC-3, and U-87 cancer cell lines with the application of the MTT assay. The HDF cell line was applied to evaluate the tested compounds' Selectivity Index. The antioxidant test was performed with a DPPH assay. Almost all triterpene dimers showed a high level of cytotoxic activity towards selected cancer cell lines, with an IC value below 10 µM. The synthesised derivatives of oleanolic acid exhibited varying degrees of antioxidant activity, surpassing that of the natural compound in several instances. Employing the DPPH assay, compounds , , and emerged as promising candidates, demonstrating significantly higher Trolox equivalents and highlighting their potential for pharmaceutical and nutraceutical applications. Joining two oleanolic acid residues through their C-17 carboxyl group using α,ω-dihalogenoalkanes/α,ω-dihalogenoalkenes resulted in the synthesis of highly potent cytotoxic agents with favourable SIs and high levels of antioxidant activity.
本工作旨在通过经济的方法获得一组具有高细胞毒性和抗氧化活性、低毒性的齐墩果酸衍生物。应用α,ω-二卤代烷/α,ω-二卤代烯烃对齐墩果酸进行烷基化,得到 14 个二聚体结构的衍生物。所有新获得的化合物都经过 QSAR 计算分析,以评估根据分析化合物的结构发生不同类型药理活性的概率。所有二聚体均进行细胞毒性活性和抗氧化潜力测试。用 MTT 测定法在 SKBR-3、SKOV-3、PC-3 和 U-87 癌细胞系上测试细胞毒性。应用 HDF 细胞系评估测试化合物的选择性指数。抗氧化试验采用 DPPH 测定法进行。几乎所有的三萜二聚体对选定的癌细胞系都表现出高细胞毒性活性,IC 值低于 10 µM。齐墩果酸的合成衍生物表现出不同程度的抗氧化活性,在某些情况下超过了天然化合物。通过 DPPH 测定法,化合物 、 和 表现出较高的 Trolox 当量,表明它们具有在药物和营养保健品方面的应用潜力。使用α,ω-二卤代烷/α,ω-二卤代烯烃将两个齐墩果酸残基通过 C-17 羧基连接起来,合成了具有高活性、良好 SI 和高抗氧化活性的高效细胞毒性剂。