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Generation of Broad-Spectrum Antifungal Drug Candidates from the Natural Product Compound Aureobasidin A

机译:从天然产物化合物Aureobasidin A产生广谱抗真菌药物候选人

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摘要

The natural product aureobasidin A (AbA) is a potent, well-tolerated antifungal agent with robust efficacy in animals. Although native AbA is active against a number of fungi, it has little activity against Aspergillus fumigatus, an important human pathogen, and attempts to improve the activity against this organism by structural modifications have to date involved chemistries too complex for continued development. This report describes novel chemistry for the modification of AbA. The key step involves functionalization of the phenylalanine residues in the compound by iridium-catalyzed borylation. This is followed by displacement of the pinacol boron moiety to form the corresponding bromide or iodide and substitution by Suzuki biaryl coupling. The approach allows for synthesis of a truly wide range of derivatives and has produced compounds with A. fumigatus minimal inhibitory concentrations (MIC) of <0.5 mu g/mL. The approach is readily adaptable to large-scale synthesis and industrial production.
机译:天然产物金黄担子素A(AbA)是一种有效的,耐受性强的抗真菌剂,对动物具有强大的功效。尽管天然的AbA对许多真菌具有活性,但对烟曲霉(一种重要的人类病原体)几乎没有活性,并且通过结构修饰来提高针对这种生物的活性的尝试迄今涉及的化学物质太复杂,无法继续开发。该报告描述了用于修饰AbA的新型化学方法。关键步骤涉及通过铱催化的硼化作用使化合物中的苯丙氨酸残基官能化。这之后是频哪醇硼部分的置换,以形成相应的溴化物或碘化物,并被铃木联芳基偶联取代。该方法可以合成范围广泛的衍生物,并生产出烟曲霉的最小抑菌浓度(MIC)<0.5μg / mL的化合物。该方法易于适应大规模合成和工业生产。

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