Pharmacy, Cosmetic Chemistry and Biotechnology Research Group, Łukasiewicz Research Network-Industrial Chemistry Institute, 01-793 Warsaw, Poland.
Department of Lipids and Liposomes, Faculty of Biotechnology, University of Wroclaw, 50-383 Wroclaw, Poland.
Int J Mol Sci. 2024 Feb 22;25(5):2573. doi: 10.3390/ijms25052573.
New amide conjugates of hydroxycinnamic acids (HCAs) and the known antineoplastic 5,11-dimethyl-5-indolo[2,3-]quinoline (DiMIQ), an analog of the natural alkaloid neocryptolepine, were synthesized and tested in vitro for anticancer activity. The compound 9-[((2-hydroxy)cinnamoyl)amino]-5,11-dimethyl-5-indolo[2,3-]quinoline (), which contains the ortho-coumaric acid fragment, demonstrated dose-dependent effectiveness against both normal BxPC-3 and metastatic AsPC-1 pancreatic cancer cells. The IC values for AsPC-1 and BxPC-3 were 336.5 nM and 347.5 nM, respectively, with a selectivity index of approximately 5 for both pancreatic cancer cells compared to normal dermal fibroblasts. Conjugate did not exhibit any hemolytic activity against human erythrocytes at the tested concentration. Computational studies were performed to predict the pharmacokinetic profile and potential mechanism of action of the synthesized conjugates. These studies focused on the ADME properties of the conjugates and their interactions with DNA, as well as DNA-topoisomerase alpha and beta complexes. All of the conjugates studied showed approximately one order of magnitude stronger binding to DNA compared to the reference DiMIQ, and approximately two orders of magnitude stronger binding to the topoisomerase II-DNA complex compared to DiMIQ. Conjugate was predicted to have the strongest binding to the enzyme-DNA complex, with a Ki value of 2.8 nM.
新的羟基肉桂酸(HCAs)酰胺缀合物和已知的抗肿瘤 5,11-二甲基-5-吲哚并[2,3-]喹啉(DiMIQ),一种天然生物碱新隐亭的类似物,被合成并在体外进行了抗癌活性测试。该化合物 9-[[(2-羟基肉桂酰)氨基]-5,11-二甲基-5-吲哚并[2,3-]喹啉(),其中包含邻香豆酸片段,对正常 BxPC-3 和转移性 AsPC-1 胰腺癌细胞具有剂量依赖性的有效性。AsPC-1 和 BxPC-3 的 IC 值分别为 336.5 nM 和 347.5 nM,与正常皮肤成纤维细胞相比,对两种胰腺癌细胞的选择性指数约为 5。在测试浓度下,没有对人红细胞表现出任何溶血活性。进行了计算研究,以预测合成缀合物的药代动力学特征和潜在作用机制。这些研究集中在缀合物的 ADME 特性及其与 DNA 的相互作用,以及 DNA-拓扑异构酶 alpha 和 beta 复合物的相互作用。与参考 DiMIQ 相比,所有研究的缀合物对 DNA 的结合强度大约强一个数量级,与 DiMIQ 相比,对拓扑异构酶 II-DNA 复合物的结合强度大约强两个数量级。预测缀合物对酶-DNA 复合物的结合强度最强,Ki 值为 2.8 nM。