Department of Organic Chemistry, Faculty of Chemical Engineering and Technology, University of Zagreb, Marulićev trg 20, P.O. Box 177, HR-10000 Zagreb, Croatia.
Molecules. 2009 Nov 27;14(12):4866-79. doi: 10.3390/molecules14124866.
The synthetic route for introduction of fluorophenylalkyl (compounds 5, 7, 14 and 15) and fluorophenylalkenyl (compounds 4E and 13) side chains at C-6 of the pyrimidine nucleus involved the lithiation of the pyrimidine derivatives 1, 2 and 11 and subsequent nucleophilic addition or substitution reactions of the organolithium intermediate thus obtained with 2-fluorophenylacetone, 4-fluoroacetophenone or ethyl 4-fluorobenzoate as electrophiles. The structures of novel compounds were confirmed by (1)H-, (19)F- and (13)C-NMR and MS. Compounds 8 and 10 containing unsaturated fluorophenylalkyl side chains showed better inhibitory effect than their saturated fluorophenylalkylated pyrimidine counterparts 7 and 9. A conformational study based on NOE enhancements showed the importance of the double bond and substitution in the side chain for the conformational preferences in relation to inhibitory activity. Among all tested compounds, C-5 furyl (12) and phenyl (13 and 15) substituted pyrimidine derivatives showed significant cytostatic activities against all tested tumor cell lines.
引入氟代苯烷基(化合物 5、7、14 和 15)和氟代苯烯基(化合物 4E 和 13)侧链到嘧啶核的 C-6 的合成路线涉及嘧啶衍生物 1、2 和 11 的锂化以及随后的亲核加成或取代反应,其中有机锂中间体与 2-氟苯乙酮、4-氟苯乙酮或 4-氟苯甲酸乙酯作为亲电试剂。新型化合物的结构通过(1)H、(19)F 和(13)C-NMR 和 MS 得到确认。含有不饱和氟代苯烷基侧链的化合物 8 和 10 比其饱和氟代苯烷基化嘧啶类似物 7 和 9 表现出更好的抑制效果。基于 NOE 增强的构象研究表明双键和侧链取代对构象偏好与抑制活性的关系的重要性。在所有测试的化合物中,C-5 呋喃基(12)和苯基(13 和 15)取代的嘧啶衍生物对所有测试的肿瘤细胞系均表现出显著的细胞生长抑制活性。