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Heterocyclic bismuth carboxylates based on a diphenyl sulfone scaffold: Synthesis and antifungal activity against Saccharomyces cerevisiae

机译:基于二苯砜支架的杂环羧酸铋:对酿酒酵母的合成和抗真菌活性

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摘要

A series of heterocyclic organobismuth(III) carboxylates 4 and 5 [RCO 2Bi(C6H4-2-SO2C6H 4-1′-)] derived from diphenyl sulfone was synthesized to determine the influence of the carboxylate ligand structure on the lipophilicity and antifungal activity against the yeast Saccharomyces cerevisiae. In contrast to the clear structure-activity relationship between the size of the inhibition zone and the value of ClogP for specific substitution on diphenyl sulfone scaffold 1 [ClBi(5-RC6H3-2-SO2C 6H4-1′-)], scaffolds 4 and 5 showed similar inhibition activities irrespective of the ClogP value. This suggests that these molecules function inside the yeast cell by separating into the cationic heterocyclic bismuth scaffold and the anionic carboxylate moiety, and that the bismuth scaffold plays an important role in the inhibition activity.
机译:合成了一系列衍生自二苯砜的杂环有机铋(III)羧酸盐4和5 [RCO 2Bi(C6H4-2-SO2C6H 4-1'-)],以确定羧酸盐配体结构对亲脂性和抗真菌活性的影响酵母酿酒酵母。与抑制区大小和ClogP值在二苯砜支架1 [ClBi(5-RC6H3-2-SO2C 6H4-1'-)],支架4和图5显示了相似的抑制活性,而与ClogP值无关。这表明这些分子通过分离成阳离子杂环铋支架和阴离子羧酸根部分而在酵母细胞内起作用,并且铋支架在抑制活性中起重要作用。

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