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发现并优化基于 2,3-二芳基-1,3-噻唑烷-4-酮的衍生物,作为具有抗炎活性的有效且选择性的细胞毒性剂。

Discovery and optimization of 2,3-diaryl-1,3-thiazolidin-4-one-based derivatives as potent and selective cytotoxic agents with anti-inflammatory activity.

机构信息

Science and Technology Unit (STU), Umm Al-Qura University, Makkah, 21955, Saudi Arabia.

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Umm Al-Qura University, Makkah, 21955, Saudi Arabia.

出版信息

Eur J Med Chem. 2023 Nov 5;259:115712. doi: 10.1016/j.ejmech.2023.115712. Epub 2023 Aug 6.

Abstract

Several studies have indicated the potential therapeutic outcomes of combining selective COX-2 inhibitors with tubulin-targeting anticancer agents. In the current study, a novel series of thiazolidin-4-one-based derivatives (7a-q) was designed by merging the pharmacophoric features of some COXs inhibitors and tubulin polymerization inhibitors. Compounds 7a-q were synthesized and evaluated for their cytotoxic activity against MCF7, HT29, and A2780 cancer cell lines (IC = 0.02-17.02 μM). The cytotoxicity of 7a-q was also assessed against normal MRC5 cells (IC = 0.47-13.46 μM). Compounds 7c, 7i, and 7j, the most active in the MTT assay, significantly reduced the number of HT29 colonies compared to the control. Compounds 7c, 7i, and 7j also induced significant decreases in the tumor volumes and masses in Ehrlich solid carcinoma-bearing mice compared to the control. The three compounds also exhibited significant anti-HT29 migration activity in the wound-healing assay. They have also induced cell cycle arrest in HT29 cells at the S and G/M phases. In addition, they induced significant increases in both early and late apoptotic events in HT29 cells compared to the control, where 7j showed the highest effect. On the other hand, compound 7j (1 μM) displayed weak inhibitory activity against tubulin polymerization compared to colchicine (3 μM). On the other hand, compounds 7a-q inhibited the activity of COX-2 (IC = 0.42-29.11 μM) compared to celecoxib (IC = 0.86 μM). In addition, 7c, 7i, and 7j showed moderate inhibition of inflammation in rats compared to indomethacin, with better GIT safety profiles. Molecular docking analysis revealed that 7c, 7i, and 7j have higher binding free energies towards COX-2 than COX-1. These above results suggested that 7j could serve as a potential anticancer drug candidate.

摘要

几项研究表明,将选择性 COX-2 抑制剂与微管靶向抗癌药物联合使用具有潜在的治疗效果。在本研究中,通过融合一些 COXs 抑制剂和微管聚合抑制剂的药效团特征,设计了一系列新型噻唑烷-4-酮类衍生物(7a-q)。合成了化合物 7a-q,并对其在 MCF7、HT29 和 A2780 癌细胞系中的细胞毒性进行了评估(IC = 0.02-17.02 μM)。还评估了 7a-q 对正常 MRC5 细胞的细胞毒性(IC = 0.47-13.46 μM)。在 MTT 测定中最活跃的化合物 7c、7i 和 7j 与对照组相比,显著减少了 HT29 集落的数量。与对照组相比,化合物 7c、7i 和 7j 还显著降低了荷 Ehrlich 实体癌小鼠的肿瘤体积和质量。这三种化合物在划痕愈合试验中也表现出显著的抗 HT29 迁移活性。它们还诱导 HT29 细胞在 S 和 G/M 期的细胞周期停滞。此外,与对照组相比,它们在 HT29 细胞中诱导了早期和晚期凋亡事件的显著增加,其中 7j 表现出最高的效果。另一方面,与秋水仙碱(3 μM)相比,化合物 7j(1 μM)对微管聚合的抑制活性较弱。另一方面,与塞来昔布(IC = 0.86 μM)相比,化合物 7a-q 抑制 COX-2 的活性(IC = 0.42-29.11 μM)。此外,与吲哚美辛相比,7c、7i 和 7j 对大鼠的炎症具有中等抑制作用,具有更好的胃肠道安全性。分子对接分析表明,7c、7i 和 7j 与 COX-2 的结合自由能高于 COX-1。这些结果表明,7j 可能是一种有潜力的抗癌药物候选物。

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