Allen Ryan A, Jennings Megan C, Mitchell Myles A, Al-Khalifa Saleh E, Wuest William M, Minbiole Kevin P C
Department of Chemistry, Villanova University, Villanova, PA 19085, United States.
Department of Chemistry, Temple University, Philadelphia, PA 19122, United States.
Bioorg Med Chem Lett. 2017 May 15;27(10):2107-2112. doi: 10.1016/j.bmcl.2017.03.077. Epub 2017 Mar 29.
Quaternary ammonium compounds (QACs) are ubiquitous antiseptics whose chemical stability is both an aid to prolonged antibacterial activity and a liability to the environment. Soft antimicrobials, such as QACs designed to decompose in relatively short times, show the promise to kill bacteria effectively but not leave a lasting footprint. We have designed and prepared 40 soft QAC compounds based on both ester and amide linkages, in a systematic study of mono-, bis-, and tris-cationic QAC species. Antimicrobial activity, red blood cell lysis, and chemical stability were assessed. Antiseptic activity was strong against a panel of six bacteria including two MRSA strains, with low micromolar activity seen in many compounds; amide analogs showed superior activity over ester analogs, with one bisQAC displaying average MIC activity of ∼1μM. For a small subset of highly bioactive compounds, hydrolysis rates in pure water as well as buffers of pH =4, 7, and 10 were tracked by LCMS, and indicated good stability for amides while rapid hydrolysis was observed for all compounds in acidic conditions.
季铵化合物(QACs)是普遍存在的防腐剂,其化学稳定性既有助于延长抗菌活性,也对环境造成负担。软性抗菌剂,如设计为在相对短时间内分解的QACs,有望有效杀灭细菌但不会留下持久的影响。我们基于酯键和酰胺键设计并制备了40种软性QAC化合物,对单阳离子、双阳离子和三阳离子QAC物种进行了系统研究。评估了抗菌活性、红细胞裂解和化学稳定性。对包括两种耐甲氧西林金黄色葡萄球菌菌株在内的六种细菌的抗菌活性很强,许多化合物的活性低至微摩尔级别;酰胺类似物的活性优于酯类似物,一种双季铵盐的平均最低抑菌浓度活性约为1μM。对于一小部分高生物活性化合物,通过液相色谱 - 质谱联用仪跟踪了其在纯水以及pH = 4、7和10的缓冲液中的水解速率,结果表明酰胺具有良好的稳定性,而所有化合物在酸性条件下均观察到快速水解。