核苷二磷酸和三磷酸原药--无法解决的难题?

Q2 Pharmacology, Toxicology and Pharmaceutics Antiviral Chemistry and Chemotherapy Pub Date : 2017-12-01 Epub Date: 2017-11-03 DOI:10.1177/2040206617738656
Chris Meier
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引用次数: 0

摘要

本综述总结了我们最近在开发核苷二磷酸和核苷三磷酸原药方面取得的进展。在此之前,我们已经成功开发了一种膜渗透性代核苷酸系统,用于单磷酸核苷酸的细胞内递送,即所谓的环萨尔方法。与通过化学驱动的水解反应启动递送的工作不同,在递送二磷酸和三磷酸时,必须使用涉及(羧基)酯酶的酶触发机制。新型代核苷酸方法的其他特点包括(i) 亲脂修饰仅限于末端的磷酸基团,而内部的磷酸分子则不带电;(ii) 通过双组原药分子中的长脂肪族残基引入适当的亲脂性。将介绍二磷酸和三磷酸原药系统的概念设计,并讨论化学合成、水解特性、结构-活性关系和抗病毒活性数据。这些新方法的优势在于,三磷酸核苷原药可以绕过从核苷类似物到具有生物活性的三磷酸核苷形式的所有磷酸化步骤。此外,通过提供磷酸化程度较高的核苷酸,可以避免核苷或核苷单磷酸脱氨等酶促过程,这些过程会导致潜在的抗病毒活性化合物被分解清除。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Nucleoside diphosphate and triphosphate prodrugs - An unsolvable task?

In this review, our recent advances in the development of nucleoside di- and nucleoside triphosphate prodrugs is summarized. Previously, we had developed a successful membrane-permeable pronucleotide system for the intracellular delivery of nucleoside monophosphates as well, the so-called cycloSal-approach. In contrast to that work in which the delivery is initiated by a chemically driven hydrolysis reaction, for the di- and triphosphate delivery, an enzymatic trigger mechanism involving (carboxy)esterases had to be used. The other features of the new pronucleotide approaches are: (i) lipophilic modification was restricted to the terminal phosphate group leaving charges at the internal phosphate moieties and (ii) appropriate lipophilicity is introduced by long aliphatic residues within the bipartite prodrug moiety. The conceptional design of the di- and triphosphate prodrug systems will be described and the chemical synthesis, the hydrolysis properties, a structure-activity relationship and antiviral activity data will be discussed as well. The advantage of these new approaches is that all phosphorylation steps from the nucleoside analogue into the bioactive nucleoside triphosphate form can be bypassed in the case of the triphosphate prodrugs. Moreover, enzymatic processes like the deamination of nucleosides or nucleoside monophosphates which lead to catabolic clearance of the potential antivirally active compound can be avoided by the delivery of the higher phosphorylated nucleotides.

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来源期刊
Antiviral Chemistry and Chemotherapy
Antiviral Chemistry and Chemotherapy Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
5.20
自引率
0.00%
发文量
5
审稿时长
15 weeks
期刊介绍: Antiviral Chemistry & Chemotherapy publishes the results of original research concerned with the biochemistry, mode of action, chemistry, pharmacology and virology of antiviral compounds. Manuscripts dealing with molecular biology, animal models and vaccines are welcome. The journal also publishes reviews, pointers, short communications and correspondence.
期刊最新文献
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