Synthesis of 1,2,4-trioxepanes via application of thiol-olefin Co-oxygenation methodology

被引:14
作者
Amewu, Richard
Stachulski, Andrew V.
Berry, Neil G.
Ward, Stephen A.
Davies, Jill
Labat, Gael
Rossignol, Jean-Francois
O'Neill, Paul M.
机构
[1] Univ Liverpool, Dept Chem, Liverpool L69 3BX, Merseyside, England
[2] Univ Liverpool, Liverpool Sch Trop Med, Liverpool L3 5QA, Merseyside, England
[3] Romark Inst Med Res, Tampa, FL 33607 USA
关键词
artemisinin; 1,2,4-trioxane; endoperoxide; malaria; mechanism of action; ANTIMALARIAL-DRUG; ARTEMISININ; CHEMOTHERAPY; EFFICACY;
D O I
10.1016/j.bmcl.2006.08.098
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Thiol-olefin co-oxygenation (TOCO) of substituted allylic alcohols generates beta-hydroxy peroxides that can be condensed in situ with various ketones, to afford a series of functionalised 1,2,4-trioxepanes in good yields. Manipulation of the phenylsulfenyl group in 8a-8c allows for convenient modification to the spiro-trioxepane substituents. Surprisingly, and in contrast to the 1,2,4-trioxanes examined, 1,2,4-trioxepanes are inactive as antimalarials up to 1000 nM and we rationalize this observation based on the inherent stability of these systems to ferrous mediated degradation. FMO calculations clearly show that the sigma* orbital of the peroxide moiety of 1,2,4-trioxane derivatives 4a and 14b are lower in energy and more accessible to attack by Fe(II) compared to their trioxepane analogues 8b and 9b. (c) 2006 Published by Elsevier Ltd.
引用
收藏
页码:6124 / 6130
页数:7
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