Minimalistic bis-triarylpyridinium cations: effective antimicrobials against bacterial and fungal pathogens.

IF 4.1 4区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Ana M López-Fernández, Jean C Neto, Rosa de Llanos, Juan F Miravet, Francisco Galindo
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Abstract

A series of twelve compounds from the family of 2,4,6-triarylpyridinium cations have been synthesized, chemically characterized (1H, 13C NMR, HRMS), and microbiologically evaluated (MIC determination against S. aureus, E. faecalis, E. coli, P. aeruginosa, and C. albicans). These compounds are quaternary ammonium cations (QACs), classified as either mono-QACs or bis-QACs. The mono-QACs are further divided into those with short (three-carbon) and long (twelve-carbon) pendant chains. An additional structural variable is the number of bromine atoms attached to the aromatic rings, ranging from zero to three. The major findings of this study are: (a) bis-QACs exhibit notably higher antimicrobial activity than mono-QACs; (b) an increased number of bromine atoms on the structure appears to diminish antimicrobial properties and (c) one of the compounds (1a) shows particularly promising properties as a broad spectrum antimicrobial, given its low MICs across all five pathogenic microorganisms studied. Preliminary assays with C. albicans show that 1a has a strong mitochondrial activity, causing a remarkable mitochondrial membrane depolarization in this organelle. Taken together, this study positions triarylpyridinium cations-previously unexplored as antimicrobials-as promising candidates for future drug development, especially in light of the growing concern over drug-resistant microorganisms.

最小化双三芳基吡啶阳离子:针对细菌和真菌病原体的有效抗菌剂。
从2,4,6-三烷基吡啶阳离子家族中合成了12个化合物,进行了化学表征(1H、13C NMR、HRMS),并进行了微生物学评价(对金黄色葡萄球菌、粪孢杆菌、大肠杆菌、铜绿假单胞菌和白色念珠菌的MIC测定)。这些化合物是季铵盐阳离子(QACs),分为单季铵盐和双季铵盐。单qac又分为短链(3个碳)和长链(12个碳)。另一个结构变量是附着在芳香环上的溴原子数,范围从0到3。本研究的主要发现是:(a)双qacs的抗菌活性明显高于单qacs;(b)结构上溴原子数量的增加似乎降低了抗菌性能;(c)其中一种化合物(1a)作为广谱抗菌剂表现出特别有希望的性能,因为它在所有五种所研究的致病微生物中都具有较低的mic。对白色念珠菌的初步分析表明,1a具有很强的线粒体活性,在该细胞器中引起显著的线粒体膜去极化。总而言之,这项研究将三芳基吡啶阳离子(以前未被开发为抗菌剂)定位为未来药物开发的有希望的候选者,特别是鉴于对耐药微生物的日益关注。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.80
自引率
2.40%
发文量
129
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