首页> 外文期刊>The Journal of Organic Chemistry >Synthesis of C-4′Truncated Phosphonated Carbocyclic 2′-Oxa-3′-azanucleosides as Antiviral Agents
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Synthesis of C-4′Truncated Phosphonated Carbocyclic 2′-Oxa-3′-azanucleosides as Antiviral Agents

机译:作为抗病毒剂的C-4'截短的膦酰基碳环2'-Oxa-3'-氮杂核苷的合成

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摘要

A new template of C-4′-truncated phosphonated nucleosides (TPCOANs) has been obtained in good yields according to two different routes which exploit the reactivity of a phosphonated nitrone. The one-step procedure based on the 1,3-dipolar cycloaddition of a phosphonated nitrone with vinyl nucleobases leads to the unnatural α-nucleosides as the main adducts. On the other hand, the target β-anomers have been obtained in high yield by a two-step procedure based on the 1,3-dipolar cycloaddition of a phosphonated nitrone with vinyl acetate followed by nucleosidation reaction. The reactivity of the phosphonated nitrone has been investigated trough quantum mechanical DFT calculations at the B3LYP/D95+(d,p) theory level. Preliminary biological assays show that β-anomers of TPCOANs are able to inhibit the reverse trancriptase of different retroviruses at concentrations in the nanomolar range, with a potency comparable with that of tenofovir.
机译:根据利用膦酸酯化的硝酮的反应性的两种不同途径,已经以高收率获得了C-4'-截短的膦酸酯化核苷(TPCOAN)的新模板。基于膦酸酯化的硝酮与乙烯基核苷的1,3-偶极环加成反应的一步法可导致非天然α-核苷作为主要加合物。另一方面,基于膦酸酯化的硝酮与乙酸乙烯酯的1,3-偶极环加成,然后进行核苷化反应的两步法,以高产率获得了目标β-端基异构体。已通过B3LYP / D95 +(d,p)理论水平的量子力学DFT计算研究了膦酸酯化的硝酮的反应性。初步生物学分析表明,TPCOANs的β-端基异构体能够在纳摩尔浓度范围内抑制不同逆转录病毒的逆转录酶,其效力与替诺福韦相当。

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