Department of Chemistry, Faculty of Science, Mansoura University, Mansoura, 35516, Egypt.
Department of Chemistry, College of Science, King Saud University, P.O. Box 2455, Riyadh, 11451, Saudi Arabia.
Chem Biodivers. 2024 Jul;21(7):e202400313. doi: 10.1002/cbdv.202400313. Epub 2024 Jun 25.
The aim of this study involves the synthesis novel thiophene analogues that can be used as anticancer medications through a strategic multicomponent reaction connecting ethyl 4-chloroacetoacetate (1), phenyl isothiocyanate, and a series of active methylene reagents, including ethyl acetoacetate (2), malononitrile, ethyl cyanoacetate, cyanoacetamide 6a-c, N-phenyl cyanoacetamide derivatives 13a-c, and acetoacetanilide derivatives 18. This reaction was facilitated by dry dimethylformamide with a catalytic quantity of KCO. The resultant thiophene derivatives were identified as 4, 8a-b, 9, 12a-d, 15a-c, and 20a-b. Further reaction of compound 4 with hydrazine hydrate yielded derivative 5, respectively. When compound 1 was refluxed with ethyl 3-mercapto-3-(phenylamino)-2-(p-substituted phenyldiazenyl)acrylate 10a-e in the presence of sodium ethoxide, it produced thiophene derivatives 12a-d. Comprehensive structural elucidation of these newly synthesized thiophene-analogues was accomplished via elemental and spectral analysis data. Furthermore, the study delves into the cytotoxicity of the newly synthesized thiophenes was evaluated using the HepG2, A2780, and A2780CP cell lines. The amino-thiophene derivative 15b exhibited an increased growth inhibition of A2780, and A2780CP with IC50 values 12±0.17, and 10±0.15 μM, respectively compared to Sorafenib with IC50 values 7.5±0.54 and 9.4±0.14. This research opens new avenues for developing thiophene-based anticancer agents.
本研究的目的是通过连接乙基 4-氯乙酰乙酸酯(1)、苯异硫氰酸酯和一系列活性亚甲基试剂(包括乙酰乙酸乙酯(2)、丙二腈、氰基乙酸乙酯、氰乙酰胺 6a-c、N-苯基氰基乙酰胺衍生物 13a-c 和乙酰乙酰苯胺衍生物 18)的多组分反应,合成可作为抗癌药物的新型噻吩类似物。该反应在干燥的二甲基甲酰胺中使用催化量的 KCO 进行。所得噻吩衍生物被鉴定为 4、8a-b、9、12a-d、15a-c 和 20a-b。进一步将化合物 4 与水合肼反应分别得到衍生物 5。当化合物 1 在乙醇钠存在下回流与乙基 3-巯基-3-(苯氨基)-2-(对取代苯偶氮基)丙烯酸酯 10a-e 反应时,生成噻吩衍生物 12a-d。通过元素和光谱分析数据完成了这些新合成的噻吩类似物的综合结构阐明。此外,研究还评估了新合成的噻吩的细胞毒性,使用 HepG2、A2780 和 A2780CP 细胞系。与索拉非尼的 IC50 值 7.5±0.54 和 9.4±0.14 相比,氨基噻吩衍生物 15b 对 A2780 和 A2780CP 的生长抑制作用更强,IC50 值分别为 12±0.17 和 10±0.15 μM。这项研究为开发基于噻吩的抗癌药物开辟了新途径。