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Semisynthesis and biological evaluation of a focused library of unguinol derivatives as next-generation antibioticsf

机译:作为下一代抗生素的非纯衍生物聚焦文库的半合成和生物学评价

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摘要

In this study, we report the semisynthesis and in vitro biological evaluation of thirty-four derivatives of the fungal depsidone antibiotic, unguinol. Initially, the semisynthetic modifications were focused on the two free hydroxy groups (3-OH and 8-OH), the three free aromatic positions (C-2, C-4 and C-7), the butenyl side chain and the depsidone ester linkage. Fifteen first-generation unguinol analogues were synthesised and screened against a panel of bacteria, fungi and mammalian cells to formulate a basic structure activity relationship (SAR) for the unguinol pharmacophore. Based on the SAR studies, we synthesised a further nineteen second-generation analogues, specifically aimed at improving the antibacterial potency of the pharmacophore. In vitro antibacterial activity testing of these compounds revealed that 3-O-(2-fluoro-benzyl)unguinol and 3-O-(2,4-difluorobenzyl)unguinol showed potent activity against both methicillin-susceptible and methicillin-resistant Staphylococcus aureus (MIC 0.25-1 μg mL~(-1)) and are promising candidates for further development in vivo.
机译:在这项研究中,我们报告了脱甲酰甲烷抗生素的三十四个衍生物的半合成和体外生物学评价。最初,半合成的修饰将聚焦在两个游离羟基(3-OH和8-OH)上,三种游离芳族位置(C-2,C-4和C-7),丁烯基侧链和Depsidone酯连锁。将十五个第一代的织物类似物合成并筛选用于细菌,真菌和哺乳动物细胞的面板,以制备非纯药长的基本结构活性关系(SAR)。基于SAR研究,我们合成了一部分左十九代类似物,特别是提高药效线的抗菌性效力。这些化合物的体外抗菌活性检测显示,3-O-(2-氟 - 苄基)非纯酚和3-O-(2,4-二氟苄基)Unguinol对甲氧西林易感和甲氧西林葡萄球菌( MIC0.25-1μgmL〜(-1)),并且是有希望的候选人,用于体内进一步发展。

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  • 来源
    《Organic & biomolecular chemistry》 |2021年第5期|1022-1036|共15页
  • 作者单位

    Department of Molecular Sciences Macquarie University NSW2109 Australia;

    Australian Centre for Antimicrobial Resistance Ecology School of Animal and Veterinary Sciences The University of Adelaide Roseworthy SA 5371 Australia;

    Microbial Screening Technologies Pty. Ltd Smithfield NSW 2164 Australia;

    Microbial Screening Technologies Pty. Ltd Smithfield NSW 2164 Australia;

    Department of Molecular Sciences Macquarie University NSW2109 Australia Microbial Screening Technologies Pty. Ltd Smithfield NSW 2164 Australia;

    Australian Centre for Antimicrobial Resistance Ecology School of Animal and Veterinary Sciences The University of Adelaide Roseworthy SA 5371 Australia;

    Advanced Veterinary Therapeutics Pty. Ltd Newtown NSW 2042 Australia;

    Australian Centre for Antimicrobial Resistance Ecology School of Animal and Veterinary Sciences The University of Adelaide Roseworthy SA 5371 Australia;

    Department of Molecular Sciences Macquarie University NSW2109 Australia;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 23:28:51

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