Department of Organic Chemistry, Faculty of Chemical Engineering and Technology, University of Zagreb, Marulićev trg 20, HR-10000 Zagreb, Croatia.
Molecules. 2013 May 2;18(5):5104-24. doi: 10.3390/molecules18055104.
The efficient syntheses of 5-(2-hydroxyethyl)- and 5-(3-hydroxypropyl)-substituted pyrimidine derivatives bearing 2,3-dihydroxypropyl, acyclovir-, ganciclovir- and penciclovir-like side chains are reported. A synthetic approach that included the alkylation of an N-anionic-5-substituted pyrimidine intermediate (method A) provided the target acyclonucleosides in significantly higher overall yields in comparison to those obtained by method B using sylilation reaction. The phosphorylation assays of novel compounds as potential substrates for thymidine kinase of herpes simplex virus type 1 (HSV-1 TK) showed that solely pyrimidine 5-substituted acyclonucleosides with a penciclovir-like side chain acted as a fraudulent substrates of HSV-1 TK. Moreover, the uracil derivative with penciclovir-like side chain with less bulky 2-hydroxyethyl substituent at C-5 proved to be a better substrate than the corresponding one with a 3-hydroxypropyl substituent. Therefore, this acyclonucleoside was selected as a lead compound for the development of a positron emission tomography HSV-1 TK activity imaging agent.
报道了具有 2,3-二羟丙基、阿昔洛韦、更昔洛韦和喷昔洛韦类似侧链的 5-(2-羟乙基)-和 5-(3-羟丙基)取代嘧啶衍生物的高效合成。一种包括 N-阴离子-5-取代嘧啶中间体的烷基化的合成方法(方法 A)与使用硅烷化反应的方法 B 相比,以显著更高的总收率提供了目标的阿昔洛韦核苷。作为单纯疱疹病毒 1(HSV-1 TK)胸苷激酶的潜在底物的新型化合物的磷酸化测定表明,仅嘧啶 5-取代的阿昔洛韦核苷具有喷昔洛韦类似的侧链,充当 HSV-1 TK 的欺诈性底物。此外,在 C-5 位具有较小体积的 2-羟乙基取代基的尿嘧啶衍生物证明是比具有 3-羟丙基取代基的相应化合物更好的底物。因此,该阿昔洛韦核苷被选为开发正电子发射断层扫描 HSV-1 TK 活性成像剂的先导化合物。