Institute of Genetics and Microbiology, University of Wrocław, Przybyszewskiego 63/77, 51-148 Wrocław, Poland.
Institute of Genetics and Microbiology, University of Wrocław, Przybyszewskiego 63/77, 51-148 Wrocław, Poland.
Colloids Surf B Biointerfaces. 2018 Apr 1;164:34-41. doi: 10.1016/j.colsurfb.2018.01.020. Epub 2018 Jan 31.
The studies were aimed to contribute to the elucidation of the relationships between structure of the double-headed cationic surfactants - N,N-bis[3,3'-(dimethylamine)propyl]alkylamide dihydrochlorides and N,N-bis[3,3'-(trimethylammonio)propyl]alkylamide dibromides (alkyl: n-CH, n-CH, n-CH, n-CH), which are of particular interest, as they contain a labile amide group in the molecule and their antifungal activity. Therefore, the minimal inhibitory and fungicidal concentrations (MIC and MFC) of dicephalic surfactants against various fungi were tested using standardized methods. Most of the tested fungi were resistant to the Cn(TAPABr) compounds. The strongest growth inhibition was caused by Cn(DAPACl) series, which MICs ranged from 6.5 to 16 μM. The influence of dicephalic surfactants on Candida albicans biofilm and adhesion to the various surfaces was investigated with crystal violet staining or colony counting. The reduction of fungal adhesion was also observed, especially to the glass surface. One of the compounds (C14(DAPACl)) caused DNA leakage from C. albicans cells. Further studies showed the impact of dicephalic surfactants on ROS production, accumulation of lipid droplets and filament formation. This study points to the possibility of application of dicephalic surfactants as the surface-coating agents to prevent biofilm formation or as disinfectants. The results give an insight into the possible mechanism of action of newly synthesized dicephalic surfactants in yeast cells.
这些研究旨在阐明具有双头阳离子表面活性剂结构的关系-N,N-双[3,3'-(二甲氨基)丙基]烷基酰胺二盐酸盐和 N,N-双[3,3'-(三甲铵基)丙基]烷基酰胺二溴化物(烷基:n-CH,n-CH,n-CH,n-CH),它们具有特别的兴趣,因为它们在分子中含有不稳定的酰胺基团,并且具有抗真菌活性。因此,使用标准化方法测试了双头表面活性剂对各种真菌的最小抑菌浓度(MIC)和最小杀菌浓度(MFC)。大多数测试的真菌对 Cn(TAPABr)化合物具有抗性。 Cn(DAPACl)系列引起的生长抑制最强,MIC 范围为 6.5 至 16μM。研究了双头表面活性剂对白色念珠菌生物膜和对各种表面的粘附的影响,方法是使用结晶紫染色或菌落计数。还观察到真菌粘附的减少,尤其是对玻璃表面。一种化合物(C14(DAPACl))导致白色念珠菌细胞中 DNA 漏出。进一步的研究表明,双头表面活性剂对 ROS 产生,脂滴积累和丝状形成有影响。这项研究表明,双头表面活性剂作为表面涂层剂来防止生物膜形成或作为消毒剂的应用可能性。这些结果深入了解了新合成的双头表面活性剂在酵母细胞中可能的作用机制。