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探究抗病毒核苷前药的氨基酸磷酸单酯酰胺化物的作用机制及分解情况。

Probing the mechanism of action and decomposition of amino acid phosphomonoester amidates of antiviral nucleoside prodrugs.

作者信息

McIntee E J, Remmel R P, Schinazi R F, Abraham T W, Wagner C R

机构信息

Department of Medicinal Chemistry, College of Pharmacy, University of Minnesota, Minneapolis 55455, USA.

出版信息

J Med Chem. 1997 Oct 10;40(21):3323-31. doi: 10.1021/jm960694f.

Abstract

The decomposition pathways in peripheral blood mononuclear cells (PBMCs) and the in vitro anti-HIV-1 activity of the structurally similar 3'-azido-3'-deoxythymidine (AZT) phosphoramidates 1-6 and 3'-fluoro-3'-deoxythymidine (FLT) phosphoramidates 7-10 are reported. The AZT phosphoramidates exhibited no cytotoxicity toward CEM cells at concentrations as high as 100 microM, whereas the FLT phosphoramidates 9 and 10 had CC50 values of 95.6 and 35.1 microM, respectively. All 10 compounds exhibited no cytotoxicity toward PBMCs at concentrations as high as 100 microM and were effective at inhibiting viral replication. In particular, the AZT phosphomonoester amidate 4 displayed comparable antiviral activity to the parent nucleoside analog AZT. Mechanistic studies on the amino acid carbomethoxy ester phosphomonoester amidates revealed that their decomposition pathway differs from that of amino acid carbomethoxy ester aryl phosphodiester amidates of nucleotide prodrugs. AZT phosphomonoester amidates are internalized by lymphocytes to the same extent as AZT by a nonsaturable process. In lymphocytes, the amino acid carbomethoxy ester phosphomonoester amidates of AZT are not significantly metabolized to either AZT or the mono-, di-, or triphosphate of AZT. The amount of active anabolite, AZT-5'-triphosphate, formed in PBMCs incubated with the AZT phosphomonoester amidates 3 and 4 was 2- and 3-fold less than that observed after treatment with AZT, respectively. In contrast, FLT phosphomonoester amidates are rapidly converted to FLT-5'-monophosphate by a process that is antagonized by the corresponding AZT derivative 4. These results suggest that the metabolism of aromatic amino acid carbomethoxy ester phosphomonoester amidate nucleotide prodrugs by PBMCs does not require prior conversion to the corresponding carboxylic acid before proceeding to P-N bond cleavage.

摘要

报道了结构相似的3'-叠氮基-3'-脱氧胸苷(AZT)氨基磷酸酯1-6和3'-氟-3'-脱氧胸苷(FLT)氨基磷酸酯7-10在外周血单核细胞(PBMCs)中的分解途径及其体外抗HIV-1活性。AZT氨基磷酸酯在浓度高达100μM时对CEM细胞无细胞毒性,而FLT氨基磷酸酯9和10的CC50值分别为95.6和35.1μM。所有10种化合物在浓度高达100μM时对PBMCs均无细胞毒性,且能有效抑制病毒复制。特别是,AZT磷酸单酯氨基酯4表现出与母体核苷类似物AZT相当的抗病毒活性。对氨基酸甲氧基羰基酯磷酸单酯氨基酯的机制研究表明,它们的分解途径与核苷酸前药的氨基酸甲氧基羰基酯芳基磷酸二酯氨基酯不同。AZT磷酸单酯氨基酯被淋巴细胞内化的程度与AZT相同,是一个不饱和过程。在淋巴细胞中,AZT的氨基酸甲氧基羰基酯磷酸单酯氨基酯不会显著代谢为AZT或其单磷酸、二磷酸或三磷酸。在用AZT磷酸单酯氨基酯3和4孵育的PBMCs中形成的活性合成代谢产物AZT-5'-三磷酸的量分别比用AZT处理后观察到的量少2倍和3倍。相比之下,FLT磷酸单酯氨基酯通过一个被相应的AZT衍生物4拮抗的过程迅速转化为FLT-5'-单磷酸。这些结果表明,PBMCs对芳香族氨基酸甲氧基羰基酯磷酸单酯氨基酯核苷酸前药的代谢在进行P-N键裂解之前不需要先转化为相应的羧酸。

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