Jones David J, O'Leary Eileen M, O'Sullivan Timothy P
School of Chemistry, University College Cork, Cork, Ireland.
Analytical and Biological Chemistry Research Facility, University College Cork, Cork, Ireland.
Beilstein J Org Chem. 2019 Mar 29;15:801-810. doi: 10.3762/bjoc.15.77. eCollection 2019.
An improved synthesis of the antiviral drug adefovir is presented. Problems associated with current routes to adefovir include capricious yields and a reliance on problematic reagents and solvents, such as magnesium -butoxide and DMF, to achieve high conversions to the target. A systematic study within our laboratory led to the identification of an iodide reagent which affords higher yields than previous approaches and allows for reactions to be conducted up to 10 g in scale under milder conditions. The use of a novel tetrabutylammonium salt of adenine facilitates alkylations in solvents other than DMF. Additionally, we have investigated how regioselectivity is affected by the substitution pattern of the nucleobase. Finally, this chemistry was successfully applied to the synthesis of several new adefovir analogues, highlighting the versatility of our approach.
本文介绍了抗病毒药物阿德福韦的一种改进合成方法。当前合成阿德福韦的路线存在一些问题,包括产率不稳定,以及为了实现高转化率得到目标产物,依赖有问题的试剂和溶剂,如丁醇镁和N,N-二甲基甲酰胺(DMF)。我们实验室的一项系统研究确定了一种碘化物试剂,它比以前的方法产率更高,并且能在更温和的条件下进行高达10克规模的反应。使用一种新型的腺嘌呤四丁铵盐有助于在DMF以外的溶剂中进行烷基化反应。此外,我们还研究了碱基的取代模式如何影响区域选择性。最后,这种化学方法成功应用于几种新的阿德福韦类似物的合成,突出了我们方法的通用性。