Rachii Diana, Bezold Elise L, Wuest William M, Minbiole Kevin P C
Department of Chemistry, Villanova University, Villanova, PA, 19085, USA.
Department of Chemistry, Emory University, Atlanta, GA, 30322, USA.
ChemMedChem. 2025 Feb 16;20(4):e202400546. doi: 10.1002/cmdc.202400546. Epub 2024 Nov 20.
Quaternary ammonium compounds (QACs) have been essential for protecting human health for almost a century, functioning as surface disinfectants and sanitizers. With bacterial resistance increasing against commercially available QACs, the development of novel antimicrobials with divergent architectures is essential for effective infection prevention and control. Toward this end, our group has expanded beyond traditional ammonium scaffolds and explored the development of quaternary phosphonium compounds (QPCs). Herein, we report the synthesis and biological investigation of a series of 20 novel multicationic QPCs, bearing multiple short alkyl or aryl chains, also referred to as "bushy-tailed" multiQPCs; these structures were hypothesized to have strong bioactivity while displaying low mammalian toxicity. Select bushy-tailed QPC derivatives with trishexylphosphonium groups displayed single-digit or sub-micromolar activity against all seven bacteria tested, and MIC values of 2- to 8-fold better than their bushy-tailed QAC counterparts. Importantly, therapeutic indices of these bushy-tailed QPCs were favorable in many cases, and were ≥4 against the entire bacterial panel for pX-P6*,P6* and 1,8-P6*,P6*, superior to more traditional architectures. This work highlights the promise of a novel set of multicationic phosphonium compounds as novel disinfectants with potent bioactivities and low toxicity.
季铵化合物(QACs)近一个世纪以来一直对保护人类健康至关重要,用作表面消毒剂和清洁剂。随着细菌对市售QACs的耐药性增加,开发具有不同结构的新型抗菌剂对于有效的感染预防和控制至关重要。为此,我们团队已超越传统铵支架,探索了季鏻化合物(QPCs)的开发。在此,我们报告了一系列20种新型多阳离子QPCs的合成及生物学研究,这些化合物带有多个短烷基或芳基链,也被称为“长尾”多QPCs;据推测,这些结构具有很强的生物活性,同时显示出低哺乳动物毒性。具有三己基鏻基团的选定长尾QPC衍生物对所有七种测试细菌均表现出个位数或亚微摩尔活性,其最低抑菌浓度(MIC)值比其长尾QAC对应物好2至8倍。重要的是,这些长尾QPCs在许多情况下治疗指数良好,对于pX - P6*,P6和1,8 - P6,P6*而言,对整个细菌组的治疗指数≥4,优于更传统的结构。这项工作突出了一组新型多阳离子鏻化合物作为具有强大生物活性和低毒性的新型消毒剂的前景。