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Fungal hydroxylation of (-)-α-santonin

机译:(-)-α-桑顿宁的真菌羟基化

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Abstract: Functionalization of organic compounds using enzymes present in microorganisms is a very useful tool for organic chemists, since it is a method carried out under milder conditions than chemical ones and allows the introduction of functional groups in a nonreactive carbon in a regioselective and stereoselective way. In order to look for new compounds derived from natural products with antioxidant and cytotoxic activity, the sesquiterpene lactone (–)-α-santonin was transformed using a pure strain of Cunninghamella spp. A two-stage standard protocol with growing cells was followed, which led to 8β-hydroxy-α-santonin. The structure of the product was unequivocally elucidated by spectroscopic methods. Both the starting material and metabolite were tested in vitro for antioxidant activity using the 1,1-diphenyl-2-picrylhydrazyl method, and cytotoxic activity was tested using the Artemia salina (brine shrimp) method. In both assays, the new compound was less active than substrate and reference compounds, which means that the introduction of a hydroxyl group on carbon-8 of (–)-α-santonin with β stereochemistry did not improve the tested biological activities.
机译:摘要:利用微生物中存在的酶对有机化合物进行功能化是有机化学家非常有用的工具,因为它是在比化学条件更温和的条件下进行的方法,并允许以区域选择性和立体选择性方式在非反应性碳中引入官能团。为了寻找具有抗氧化和细胞毒性活性的天然产物衍生的新化合物,倍半萜烯内酯(-)-α-桑顿宁使用纯净的坎宁哈氏菌属菌株进行了转化。遵循两阶段的标准方案,该方案具有不断增长的细胞,可产生8β-羟基-α-桑顿宁。通过光谱学方法清楚地阐明了产物的结构。原料和代谢产物均通过1,1,1-二苯基-2-吡啶并肼法进行了体外抗氧化活性测试,细胞毒性活性采用了卤虫虾(盐水虾)方法进行了测试。在这两种测定中,新化合物的活性均低于底物和参比化合物,这意味着在具有β立体化学的(–)-α-桑顿宁碳8上引入羟基不会改善所测试的生物活性。

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