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Microwave Assisted Synthesis of Phenazines fromβ-Lapachones and Their Tuberculostatic Activity

机译:微波辅助从β-拉帕酮合成吩嗪及其抗结核活性

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Aims: The study aimed to investigate de synthesis of phenazines by microwave assisted reactions and evaluate the tuberculostatic activity.Study Design: The method developed in the study is an alternative for the method described in the literature employing acetic acid, an efficient solvent for the reaction, but corrosive and aggressive health. In addition tuberculostatic activities of phenazines were assessed and a brief study on molecular modeling of the phenazines was performed.Place and Duration of Study: The experiments were performed on Instituto Federal do Rio de Janeiro (IFRJ), Funda??o Oswaldo Cruz (FIOCRUZ) and Núcleo de Pesquisas em Ecologia e Desenvolvimento Social de Macaé (NUPEM) between 2012-2015.Methodology: Quinone (1 mmol) and 5 mmols of o-phenylenediamine were dissolved in 10 ml of 1,4-dioxane in a sealed tube. Microwave reactor conditions were: temperature 150°C and 4.5 bar pressure for 15 minutes. After the reaction water was added to the reaction media and the yellow precipitate formed was filtered under vacuum and washed 3 times with water. The phenazine was purified by silica gel column chromatography using a mixture of hexane-ethyl acetate 95 : 5 as eluent, the phenazine were obtained in yields greater than 85% in all cases.Results: Six phenazines derived from β-lapachonas were synthesized by microwave assisted reactions with good yields. The tuberculostatic activity of the five phenazines was significantly lower than phenazine from β-lapachone, a brief molecular-modeling study performed showed that the higher activity of phenazine from β-lapachone is due its polarity (μ) and Polar Surface Area (PSA).Conclusion: The microwave irradiation was effective to synthesize phenazines from β-lapachones faster and with similar yields.
机译:目的:该研究旨在研究微波辅助反应分解吩嗪并评估其抑菌活性。研究设计:该研究方法是文献中所述方法的替代方法,该方法使用乙酸(一种有效的反应溶剂) ,但具有腐蚀性和侵略性。此外,对吩嗪类药物的抗结核活性进行了评估,并对酚类化合物的分子模型进行了简要研究。研究的地点和持续时间:实验在里约热内卢联邦研究所(IFRJ),Funda?o Oswaldo Cruz(FIOCRUZ)进行。 )和2012年至2015年之间的马萨诸塞州生态环境与生态系统研究(NUPEM)。方法:将奎宁(1 mmol)和5 mmol邻苯二胺溶解在密封管中的10 ml 1,4-二恶烷中。微波反应器条件为:温度150°C和4.5 bar压力15分钟。将反应水添加至反应介质后,将形成的黄色沉淀物在真空下过滤,并用水洗涤3次。用硅胶柱色谱法以95:5的己烷-乙酸乙酯混合物为洗脱剂纯化吩嗪,在所有情况下均以大于85%的产率获得吩嗪。结果:通过微波合成了六种源自β-lapachonas的吩嗪辅助反应,收率高。这五种吩嗪的抑菌活性明显低于β-拉帕酮的吩嗪,进行的简要分子模型研究表明,β-拉帕酮的吩嗪的较高活性归因于其极性(μ)和极性表面积(PSA)。结论:微波辐射能有效地从β-lapachones合成吩嗪,收率相近。

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