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首页> 外文期刊>Organic & biomolecular chemistry >Stereoselective syntheses of racemic quercitols and bromoquercitols starting from cyclohexa-1,4-diene: gala-, epi-, muco-, and neo-quercitol
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Stereoselective syntheses of racemic quercitols and bromoquercitols starting from cyclohexa-1,4-diene: gala-, epi-, muco-, and neo-quercitol

机译:从环己-1,4-二烯开始的外消旋槲皮醇和溴代槲皮醇的立体选择性合成:Gal-,epi-,muco-和neo-quercitol

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摘要

The efficient synthesis of gala-, epi-, neo-, and muco-quercitols and some brominated quercitols starting from cydohexa-1,4-diene is reported. Treatment of the dibromide, obtained by the addition of bromine to cyclohexa-1,4-diene, with m-chloroperbenzoic acid (m-CPBA) yielded the dibromoepoxide, which was successfully converted to the desired dibromodiol by treatment with sulfuric acid. The resulting diol was reacted with 2,2-dimethoxypropane to give the dibromoketal. Hydrogen bromide elimination with NaOMe gave the key compound methoxyketal, rel-(3aS,5R,7aS)-5-methoxy-2,2-dimethyl-3a,4,5,7a-tetrahydrobenzo[d][1,3]dioxole. The second key compound, an isomeric methoxyketal, was prepared by ketalization of 4,5-dibromocyclohexane-1,2-diol with dimethoxypropane followed by the reaction with NaOMe. Deprotection of ketal functionality with sulfuric acid followed by acetylation with acetic anhydride in pyridine resulted in the formation of diacetate rel-(1S,2R,5R)-5-methoxycyclohex-3-ene-1,2-diyl diacetate. Epoxidation of the double bonds in isomeric methoxy diacetates and cis-hydroxylation followed by epoxide-opening and deprotection resulted in the formation of various quercitol derivatives. The inhibition activity of eleven quercitols, methoxyquercitols and bromoquercitols was tested against a-glycosidase.
机译:据报道,从环己-1,4-二烯开始,可高效合成Gal-,epi-,neo-和muco-槲皮醇以及一些溴化的槲皮醇。用间氯过苯甲酸(m-CPBA)处理通过将溴加到环己-1,4-二烯中而获得的二溴化物,得到二溴环氧化物,通过用硫酸处理成功地将其转化为所需的二溴二醇。使所得的二醇与2,2-二甲氧基丙烷反应,得到二溴酮。用NaOMe消除溴化氢得到关键化合物甲氧基缩酮,rel-(3aS,5R,7aS)-5-甲氧基-2,2-二甲基-3a,4,5,7a-四氢苯并[d] [1,3]二恶唑。通过用二甲氧基丙烷将4,5-二溴环己烷-1,2-二醇缩酮化,然后与NaOMe反应来制备第二种关键化合物,一种异构体甲氧基缩酮。用硫酸对缩酮官能团进行脱保护,然后在吡啶中用乙酸酐进行乙酰化,导致形成二乙酸酯rel-(1S,2R,5R)-5-甲氧基环己-3-烯-1,2-二乙酸二酯。异构体甲氧基二乙酸酯中双键的环氧化和顺式羟基化,然后环氧化物打开和脱保护,导致形成各种槲皮醇衍生物。测试了11种槲皮醇,甲氧基槲皮醇和溴代槲皮醇对α-糖苷酶的抑制活性。

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  • 来源
    《Organic & biomolecular chemistry》 |2013年第9期|1511-1524|共14页
  • 作者单位

    Department of Chemistry, Sakarya University, 54100 Sakarya, Turkey;

    Department of Chemistry, Sakarya University, 54100 Sakarya, Turkey;

    Department of Chemistry, Sakarya University, 54100 Sakarya, Turkey;

    Department of Chemistry, Sakarya University, 54100 Sakarya, Turkey;

    Department of Chemistry, Middle East Technical University, 06800 Ankara, Turkey;

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