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Mechanochemical synthesis of antifungal bis(benzoxaboroles)

机译:机械化学合成抗真菌(Benzoxaboroles)

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Several piperazine bis(benzoxaboroles) have been obtained both in solution as well as in the solid state. The environmentally friendly mechanochemical approach – hitherto not applied for the preparation of benzoxaboroles – was particularly beneficial in the case of two products afforded in low yields in solution. The in vitro studies showed high potential of the studied bis(fluorobenzoxaboroles) as antifungal agents, highlighting also the influence of the fluorine substituent position on their microbiological activity. The highest activity against A. niger , A. terreus , P. ochrochloron , C. tenuis and C. albicans was displayed by the analogue of the known benzoxaborole antifungal drug Kerydin? (Tavaborole).
机译:已经在溶液以及固态中获得了几种哌嗪双(苯并氧基硼酸盐)。环保机械化学方法 - 迄今为止不适用于制备苯并氧基洛杉矶 - 在溶液中低产率提供两种产品的情况下特别有益。体外研究表明,研究的双(氟苯并氧基洛尔)作为抗真菌剂的高潜力,突出了氟取代基对微生物活性的影响。对A.Niger,A.Terreus,P. Ochrochoron,C. Tenuis和C. albicans的最高活动由已知的Benzoxaborole抗真菌药物Kerydin的类似物展示? (Tavaborole)。

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