Gallagher Tara M, Marafino John N, Wimbish Brenden K, Volkers Brandi, Fitzgerald Gabriel, McKenna Kristin, Floyd Jason, Minahan Nicholas T, Walsh Brenna, Thompson Kirstie, Bruno David, Paneru Monica, Djikeng Sybelle, Masters Stephanie, Haji Suma, Seifert Kyle, Caran Kevin L
James Madison University, Department of Biology, 951 Carrier Drive, MSC 7801, Harrisonburg, VA 22807, USA.
James Madison University, Department of Biology, 951 Carrier Drive, MSC 7801, Harrisonburg, VA 22807, USA; James Madison University, Department of Chemistry and Biochemistry, 901 Carrier Drive, MSC 4501, Harrisonburg, VA 22807, USA.
Colloids Surf B Biointerfaces. 2017 Sep 1;157:440-448. doi: 10.1016/j.colsurfb.2017.06.010. Epub 2017 Jun 10.
Hydra amphiphiles mimic the morphology of the mythical multi-headed creatures for which they are named. Likewise, when faced with a pathogenic bacterium, some hydra derivatives are as destructive as their fabled counterparts were to their adversaries. This report focuses on eight new tricephalic (triple-headed), single-tailed amphiphiles. Each amphiphile has a mesitylene (1,3,5-trimethylbenzene) core, two benzylic trimethylammonium groups and one dimethylalkylammonium group with a linear hydrophobe ranging from short (CH) to ultralong (CH). The logarithm of the critical aggregation concentration, log(CAC), decreases linearly with increasing tail length, but with a smaller dependence than that of ionic amphiphiles with fewer head groups. Tail length also affects antibacterial activity; amphiphiles with a linear 18 or 20 carbon atom hydrophobic chain are more effective at killing bacteria than those with shorter or longer chains. Comparison to a recently reported amphiphilic series with three heads and two tails allows for the development of an understanding of the relationship between number of tails and both colloidal and antibacterial properties.
九头蛇两亲分子模仿了以其命名的神话中多头生物的形态。同样,当面对致病细菌时,一些九头蛇衍生物对其对手的破坏力就如同它们传说中的同类一样。本报告聚焦于八种新型三头单尾两亲分子。每种两亲分子都有一个均三甲苯(1,3,5 - 三甲基苯)核心、两个苄基三甲基铵基团和一个二甲基烷基铵基团,其线性疏水链长度从短(CH)到超长(CH)不等。临界聚集浓度的对数log(CAC)随尾长增加呈线性下降,但与头基较少的离子型两亲分子相比,依赖性较小。尾长也会影响抗菌活性;具有18或20个碳原子线性疏水链的两亲分子在杀死细菌方面比链较短或较长的两亲分子更有效。与最近报道的具有三个头和两个尾的两亲分子系列进行比较,有助于深入理解尾的数量与胶体性质和抗菌性质之间的关系。