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新型抗病毒化合物1-(S)-[3-羟基-2-(膦酰甲氧基)丙基]-5-氮杂胞嘧啶的细胞内代谢

Intracellular metabolism of the new antiviral compound 1-(S)-[3-hydroxy-2-(phosphonomethoxy)propyl]-5-azacytosine.

作者信息

Naesens Lieve, Andrei Graciela, Votruba Ivan, Krecmerová Marcela, Holý Antonín, Neyts Johan, De Clercq Erik, Snoeck Robert

机构信息

Rega Institute for Medical Research, Katholieke Universiteit Leuven, Minderbroedersstraat 10, B-3000 Leuven, Belgium.

出版信息

Biochem Pharmacol. 2008 Oct 15;76(8):997-1005. doi: 10.1016/j.bcp.2008.08.009. Epub 2008 Aug 19.

Abstract

1-(S)-[3-hydroxy-2-(phosphonomethoxy)propyl]-5-azacytosine [HPMP-5-azaC], the 5-azacytosine analogue of cidofovir (HPMPC), represents a new acyclic nucleoside phosphonate with pronounced activity against DNA viruses, and a selectivity index superior to that of cidofovir. Here we investigated the intracellular metabolic pathway of [6-(3)H]-HPMP-5-azaC. By comparing the metabolism in mouse lymphosarcoma S49-wild type (S49-WT) and mutant cells deficient for dCMP deaminase, we identified the mono- and diphosphate metabolites generated from HPMP-5-azaC and its deaminated product HPMP-5-azaU. In human lung carcinoma A549 cells, the relative formation of the deaminated metabolites was only 6%, implying that deamination plays a minor role in the overall metabolism of HPMP-5-azaC. The diphosphorylated metabolite of HPMP-5-azaC accounted for 60% of the total radioactivity, and reached intracellular levels which were 60-fold higher in absolute value than the corresponding diphosphate levels obtained with cidofovir. Consequently to its increased activation, HPMP-5-azaC showed about 45-fold higher incorporation into cellular DNA than cidofovir. Herpes-, pox- or adenovirus infection had no marked influence on the metabolism of HPMP-5-azaC. The HPMP-5-azaC-diphosphate metabolite was shown to have long intracellular stability (half-life: 63h), suggesting that infrequent administration of HPMP-5-azaC should be possible. HPMP-5-azaC represents a new acyclic nucleoside phosphonate compound with promising anti-DNA virus activity and a favorable metabolic profile that is characterized by low sensitivity to catabolic deamination and a high rate of phosphorylation and DNA incorporation.

摘要

1-(S)-[3-羟基-2-(膦酰甲氧基)丙基]-5-氮杂胞嘧啶[HPMP-5-氮杂胞苷]是西多福韦(HPMPC)的5-氮杂胞嘧啶类似物,是一种新型无环核苷膦酸盐,对DNA病毒具有显著活性,其选择性指数优于西多福韦。在此,我们研究了[6-(3)H]-HPMP-5-氮杂胞苷的细胞内代谢途径。通过比较小鼠淋巴肉瘤S49野生型(S49-WT)和缺乏dCMP脱氨酶的突变细胞中的代谢情况,我们鉴定了由HPMP-5-氮杂胞苷及其脱氨产物HPMP-5-氮杂尿苷产生的单磷酸和二磷酸代谢产物。在人肺癌A549细胞中,脱氨代谢产物的相对形成率仅为6%,这意味着脱氨在HPMP-5-氮杂胞苷的整体代谢中起次要作用。HPMP-5-氮杂胞苷的二磷酸化代谢产物占总放射性的60%,其细胞内水平绝对值比用西多福韦获得的相应二磷酸水平高60倍。由于其活化增加,HPMP-5-氮杂胞苷掺入细胞DNA的量比西多福韦高约45倍。疱疹病毒、痘病毒或腺病毒感染对HPMP-5-氮杂胞苷的代谢没有显著影响。HPMP-5-氮杂胞苷二磷酸代谢产物在细胞内具有较长的稳定性(半衰期:63小时),这表明HPMP-5-氮杂胞苷可以不频繁给药。HPMP-5-氮杂胞苷是一种新型无环核苷膦酸盐化合物,具有有前景的抗DNA病毒活性和良好的代谢特征,其特点是对分解代谢脱氨敏感性低、磷酸化率高和DNA掺入率高。

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