Mullah K B, Rao T S, Balzarini J, De Clercq E, Bentrude W G
Department of Chemistry, University of Utah, Salt Lake City 84112.
J Med Chem. 1992 Jul 24;35(15):2728-35. doi: 10.1021/jm00093a003.
The preparations and antiviral activities of a series (4-17) of potential prodrug forms of the antivirals 2',3'-didehydro-2',3'-dideoxyadenosine (D4A) and 2',3'-didehydro-2',3'-dideoxycytosine (D4C) are reported. The 5'-phenyl- and 5'-methylphosphonates (4, 6, 8, and 10) and their phosphonothionate congeners (5, 7, 9, and 11), with the exception of 10, were inactive in vitro against HIV-1 and HIV-2. However, the 5'-phenyl, 5'-methyl, and 5'-(3'-thymidyl) phosphate diesters (12-17) demonstrated inhibition of the cytopathic effect of HIV-1 and HIV-2 (EC50 approximately 1-60 microM) and cytotoxicities (CC50 approximately 35-200 microM) at concentration levels comparable to those of their parent compounds, D4A and D4C. This strongly suggests that the diesters are hydrolyzed to the nucleosides D4A and D4C and/or their 5'-monophosphates. The facile hydrolysis of 12 and 13 to these products was demonstrated in a medium containing 10% fetal calf serum. The molecules can serve as ready prodrug sources of the free nucleosides and their 5'-monophosphates. Evidently, the phosphonates and phosphonothionates are not similarly cleaved, nor are they phosphorylated to form antivirally active or cytotoxic products. The importance of intracellular formation of these products in the activation of 12-17 is less clear. Potential prodrugs 4-17 are all stable in aqueous solution for hours with the exception of 14. Conjugates 4-17 showed no activity against a series of DNA and RNA viruses.
报道了一系列(4 - 17)抗病毒药物2',3'-二脱氢-2',3'-二脱氧腺苷(D4A)和2',3'-二脱氢-2',3'-二脱氧胞嘧啶(D4C)潜在前药形式的制备及其抗病毒活性。5'-苯基和5'-甲基膦酸酯(4、6、8和10)及其硫代膦酸酯类似物(5、7、9和11),除10外,在体外对HIV - 1和HIV - 2无活性。然而,5'-苯基、5'-甲基和5'-(3'-胸苷基)磷酸二酯(12 - 17)在与它们的母体化合物D4A和D4C相当的浓度水平下,表现出对HIV - 1和HIV - 2细胞病变效应的抑制作用(EC50约为1 - 60 microM)和细胞毒性(CC50约为35 - 200 microM)。这强烈表明二酯被水解为核苷D4A和D4C以及/或者它们的5'-单磷酸酯。在含有10%胎牛血清的培养基中证实了12和13能轻易水解为这些产物。这些分子可作为游离核苷及其5'-单磷酸酯现成的前药来源。显然,膦酸酯和硫代膦酸酯不会以类似方式裂解,也不会磷酸化形成具有抗病毒活性或细胞毒性的产物。这些产物在细胞内形成对于12 - 17激活的重要性尚不清楚。除14外,潜在前药4 - 17在水溶液中数小时内均稳定。共轭物4 - 17对一系列DNA和RNA病毒均无活性。