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无环核苷类似物的环Sal-核苷酸的化学性质及抗单纯疱疹病毒1型评估

Chemistry and anti-herpes simplex virus type 1 evaluation of cycloSal-nucleotides of acyclic nucleoside analogues.

作者信息

Meier C, Habel L, Haller-Meier F, Lomp A, Herderich M, Klöcking R, Meerbach A, Wutzler P

机构信息

Institut für Organische Chemie, Julius-Maximilians-Universität Würzburg, Germany.

出版信息

Antivir Chem Chemother. 1998 Sep;9(5):389-402. doi: 10.1177/095632029800900503.

Abstract

The synthesis of different cycloSal-phosphotriesters of the acyclic nucleoside analogues acyclovir (ACV), penciclovir (PCV) and T-penciclovir (T-PCV) as potential new lipophilic, membrane-soluble pronucleotides is described. The introduction of the cycloSal moiety was achieved by using reactive cyclic chlorophosphane reagents. In addition to the cycloSal-PCV monophosphate (MP) phosphotriesters, a second derivative bearing an acetyl group at the second primary alcohol function was prepared. In hydrolysis studies the cycloSal-ACVMPs showed the expected range of hydrolytic stability dependent on the substituent in the masking group (8-17 h). In contrast, the cycloSal-PCVMP derivatives exhibited a 11- to 15-fold increase in hydrolytic lability as compared to the corresponding cycloSal-ACVMP derivatives. We demonstrated that the free primary alcohol group is responsible for this rate acceleration because cycloSal-OAc-PCVMP, in which the hydroxyl group was blocked by acetylation, did not show the aforementioned acceleration. Unexpectedly, the hydrolysis product was not PCVMP but according to NMR and mass spectrometry it was cycloPCVMP (cPCVMP). The title compounds were evaluated in vitro for their ability to inhibit herpes simplex virus type 1 (HSV-1) and thymidine kinase-negative (TK-) HSV-1 replication in Vero cells. The cycloSal-ACVMP compounds exhibited high antiviral activity in HSV-1-infected cells. More importantly, one derivative retained all activity from the wild-type virus strain in HSV-1/TK(-)-infected Vero cells. The PCV derivatives were markedly less active. The reason for the failure of the cycloSal-PCVMPs seems to be due to the formation of cPCVMP instead of the desired PCVMP.

摘要

描述了无环核苷类似物阿昔洛韦(ACV)、喷昔洛韦(PCV)和T - 喷昔洛韦(T - PCV)不同的环水杨酸 - 磷酸三酯的合成,这些化合物作为潜在的新型亲脂性、膜溶性前体核苷酸。通过使用活性环状氯膦烷试剂实现了环水杨酸部分的引入。除了环水杨酸 - PCV单磷酸酯(MP)磷酸三酯外,还制备了在第二个伯醇官能团处带有乙酰基的第二种衍生物。在水解研究中,环水杨酸 - ACVMPs显示出预期的水解稳定性范围,这取决于掩蔽基团中的取代基(8 - 17小时)。相比之下,与相应的环水杨酸 - ACVMP衍生物相比,环水杨酸 - PCVMP衍生物的水解不稳定性增加了11至15倍。我们证明,游离的伯醇基团是导致这种速率加速的原因,因为其中羟基被乙酰化阻断的环水杨酸 - OAc - PCVMP没有表现出上述加速现象。出乎意料的是,水解产物不是PCVMP,而是根据核磁共振和质谱分析为环PCVMP(cPCVMP)。对标题化合物进行了体外评估,以确定它们抑制单纯疱疹病毒1型(HSV - 1)和胸苷激酶阴性(TK -)HSV - 1在Vero细胞中复制的能力。环水杨酸 - ACVMP化合物在HSV - 1感染的细胞中表现出高抗病毒活性。更重要的是,一种衍生物在HSV - 1/TK( - )感染的Vero细胞中保留了来自野生型病毒株的所有活性。PCV衍生物的活性明显较低。环水杨酸 - PCVMPs失效的原因似乎是由于形成了cPCVMP而不是所需的PCVMP。

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