Yasser Norhan, Sroor Farid M, El-Shorbagy Haidan M, Eissa Shaymaa M, Hassaneen Hamdi M, Abdelhamid Ismail A
Department of Zoology, Faculty of Science, Cairo University 12613 Giza Egypt.
Faculty of Biotechnology, October University for Modern Science and Arts 6th October Giza Egypt.
RSC Adv. 2024 Jul 9;14(30):21859-21873. doi: 10.1039/d4ra03375b. eCollection 2024 Jul 5.
A unique series of pyrazolyl-chalcone derivatives was synthesized the method of Claisen-Schmidt condensation. The desired chalcone derivatives 7a-d and 9a-f were obtained in good yields by reacting the 4-acetyl-5-thiophene-pyrazole with the appropriate heteroaryl aldehyde derivatives. The novel chalcones have undergone complete elemental analysis, H-NMR, C-NMR, mass spectrometry, and IR characterization. The three human cancer cell lines MCF7 (human Caucasian breast adenocarcinoma), PC3 (prostatic cancer) and PACA2 (pancreatic carcinoma) as well as the normal cell line BJ1 (normal skin fibroblasts) were tested for the anti-cancer properties of the newly synthesized chalcone derivatives. When compared to the reference medicine doxorubicin (IC = 52.1 μM), compound 9e showed the most promise derivative (IC = 27.6 μM) against PACA2 cells, while compound 7d demonstrated anticancer efficacy (IC = 42.6 μM against MCF7 cells compared to the reference drug doxorubicin (IC = 48 μM). Using breast and pancreatic cell lines, the gene expression, DNA damage, and DNA fragmentation percentages for compounds 7d and 9e were evaluated. Moreover, the molecular docking study of compounds 7d and 9e was assessed. The binding affinities of compound 9e toward P53 mutant Y220C was -22 kcal per mole, while those of compound 7d towards Bcl2 and CDK4 were -27.81 and -26.9 kcal per mole, respectively, compared to the standard values (-15.82, -33.96 and -29.9 kcal per mole).
通过克莱森-施密特缩合方法合成了一系列独特的吡唑基查尔酮衍生物。通过使4-乙酰基-5-噻吩基吡唑与适当的杂芳基醛衍生物反应,以良好的产率获得了所需的查尔酮衍生物7a-d和9a-f。对新型查尔酮进行了完整的元素分析、氢核磁共振、碳核磁共振、质谱和红外光谱表征。测试了三种人类癌细胞系MCF7(人类白种人乳腺腺癌)、PC3(前列腺癌)和PACA2(胰腺癌)以及正常细胞系BJ1(正常皮肤成纤维细胞)对新合成的查尔酮衍生物的抗癌特性。与参考药物阿霉素(IC = 52.1 μM)相比时,化合物9e对PACA2细胞显示出最有前景的衍生物(IC = 27.6 μM),而化合物7d表现出抗癌功效(与参考药物阿霉素(IC = 48 μM)相比对MCF7细胞的IC = 42.6 μM)。使用乳腺和胰腺细胞系评估了化合物7d和9e 的基因表达、DNA损伤和DNA片段化百分比。此外,评估了化合物7d和9e的分子对接研究。与标准值(-15.82、-33.96和-29.9千卡每摩尔)相比,化合物9e对P53突变体Y220C的结合亲和力为-22千卡每摩尔,而化合物7d对Bcl2和CDK4的结合亲和力分别为-27.81和-26.9千卡每摩尔。