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Enhanced Inhibition of Orthopoxvirus Replication In Vitro by Alkoxyalkyl Esters of Cidofovir and Cyclic Cidofovir

机译:西多福韦和环西多福韦的烷氧基烷基酯增强的对正痘病毒体外复制的抑制作用

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摘要

The nucleotide phosphonates cidofovir (CDV) and cyclic cidofovir (cCDV) are potent antiviral compounds when administered parenterally but are not well absorbed orally. These compounds have been reported to have activity against orthopoxvirus replication in vitro and in animal models when administered parenterally or by aerosol. To obtain better oral activity, we synthesized a novel series of analogs of CDV and cCDV by esterification with two long-chain alkoxyalkanols, 3-hexadecyloxy-1-propanol (HDP-CDV; HDP-cCDV) or 3-octadecyloxy-1-ethanol (ODE-CDV; ODE-cCDV). Their activities were evaluated and compared with those of CDV and cCDV in human foreskin fibroblast (HFF) cells infected with vaccinia virus (VV) or cowpox virus (CV) using a plaque reduction assay. The 50% effective concentrations (EC50s) against VV in HFF cells for CDV and cCDV were 46.2 and 50.6 μM compared with 0.84 and 3.8 μM for HDP-CDV and HDP-cCDV, respectively. The EC50s for ODE-CDV and ODE-cCDV were 0.20 and 1.1 μM, respectively. The HDP analogs were 57- and 13-fold more active than the parent nucleotides, whereas the ODE analogs were 231- and 46-fold more active than the unmodified CDV and cCDV. Similar results were obtained using CV. Cytotoxicity studies indicated that although the analogs were more toxic than the parent nucleotides, the selective index was increased by 4- to 13-fold. These results indicate that the alkoxyalkyl esters of CDV and cCDV have enhanced activity in vitro and need to be evaluated for their oral absorption and efficacy in animal models.
机译:肠胃外给药时,核苷酸膦酸酯西多福韦(CDV)和环状西多福韦(cCDV)是有效的抗病毒化合物,但口服吸收不好。据报道,这些化合物在肠胃外或通过气雾剂给药时在体外和动物模型中均具有抗正痘病毒复制的活性。为了获得更好的口服活性,我们通过用两种长链烷氧基链烷醇3-十六烷氧基-1-丙醇(HDP-CDV; HDP-cCDV)或3-十八烷氧基-1-乙醇酯化合成了一系列新的CDV和cCDV类似物。 (ODE-CDV; ODE-cCDV)。使用斑块减少测定法评估了它们的活性,并与被牛痘病毒(VV)或牛痘病毒(CV)感染的人包皮成纤维细胞(HFF)中的CDV和cCDV进行了比较。 CDV和cCDV在HFF细胞中对VV的50%有效浓度(EC50)为46.2和50.6μM,而HDP-CDV和HDP-cCDV分别为0.84和3.8μM。 ODE-CDV和ODE-cCDV的EC50分别为0.20和1.1μM。 HDP类似物的活性比亲本核苷酸高57和13倍,而ODE类似物的活性比未修饰的CDV和cCDV高231和46倍。使用CV获得了相似的结果。细胞毒性研究表明,尽管类似物比母体核苷酸更具毒性,但选择性指数却提高了4到13倍。这些结果表明,CDV和cCDV的烷氧基烷基酯在体外具有增强的活性,需要在动物模型中对其口服吸收和功效进行评估。

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