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Novel alkylated azoles as potent antifungals

机译:新的烷基化氮脂肪作为有效的抗真菌

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Fluconazole (FLC) is the drug of choice when it comes to treat fungal infections such as invasive candidiasis in humans. However, the widespread use of FLC has resulted in the development of resistance to this drug in various fungal strains and, simultaneously has occasioned the need for new antifungal agents. Herein, we report the synthesis of 27 new FLC derivatives along with their antifungal activity against a panel of 13 clinically relevant fungal strains. We also explore their toxicity against mammalian cells, their hemolytic activity, as well as their mechanism of action. Overall, many of our FLC derivatives exhibited broad-spectrum antifungal activity and all compounds displayed an MIC value of <0.03 mu g/mL against at least one of the fungal strains tested. We also found them to be less hemolytic and less cytotoxic to mammalian cells than the FDA approved antifungal agent amphotericin B. Finally, we demonstrated with our best derivative that the mechanism of action of our compounds is the inhibition of the sterol 14 alpha-demethylase enzyme involved in ergosterol biosynthesis. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:氟康唑(FLC)是治疗人类侵入性念珠菌病如真菌感染时的首选药物。然而,FLC的广泛使用导致在各种真菌菌株中产生对该药物的抗性,同时存在对新的抗真菌剂的需要。在此,我们将27种新的FLC衍生物的合成以及对13例临床相关的真菌菌株的抗真菌活性的合成。我们还探讨了对哺乳动物细胞,溶血活性的毒性,以及它们的作用机制。总体而言,许多我们的FLC衍生物都表现出广谱抗真菌活性,并且所有化合物均针对测试的至少一种真菌菌株呈现为<0.03μg/ mL的MIC值。我们还发现它们对哺乳动物细胞的溶血细胞较少,比FDA批准的抗真菌剂两性霉素B.最后,我们用我们的最佳衍生物证明了我们化合物的作用机制是甾醇14α-脱甲基酶的抑制参与Ergosterol生物合成。 (c)2017年Elsevier Masson SAS。版权所有。

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