Ladd Elizabeth, Sheikhi Amir, Li Na, van de Ven Theo G M, Kakkar Ashok
Department of Chemistry, McGill University, 801 Sherbrooke St. West, Montreal, QC H3A 0B8, Canada.
Pulp and Paper Research Centre, McGill University, 3420 rue University, Montreal, QC H3A 2A7, Canada.
Molecules. 2017 May 24;22(6):868. doi: 10.3390/molecules22060868.
We report a versatile divergent methodology to construct dendrimers from a tetrafunctional core, utilizing the robust copper(I) catalyzed alkyne-azide cycloaddition (CuAAC, "click") reaction for both dendrimer synthesis and post-synthesis functionalization. Dendrimers of generations 1-3 with 8-32 protected or free OH and acetylene surface groups, were synthesized using building blocks that included acetylene- or azide-terminated molecules with carboxylic acid or diol end groups, respectively. The acetylene surface groups were subsequently used to covalently link cationic amino groups. A preliminary evaluation indicated that the generation one dendrimer with terminal NH₃⁺ groups was the most effective bactericide, and it was more potent than several previously studied dendrimers. Our results suggest that size, functional end groups and hydrophilicity are important parameters to consider in designing efficient antimicrobial dendrimers.
我们报道了一种通用的发散法,可从四官能核构建树枝状聚合物,利用稳健的铜(I)催化炔烃-叠氮环加成(CuAAC,“点击”)反应进行树枝状聚合物合成及合成后功能化。使用分别带有羧酸或二醇端基的乙炔或叠氮封端分子作为构建单元,合成了具有8-32个受保护或游离的OH及乙炔表面基团的第1-3代树枝状聚合物。随后利用乙炔表面基团共价连接阳离子氨基。初步评估表明,带有末端NH₃⁺基团的第一代树枝状聚合物是最有效的杀菌剂,且比之前研究的几种树枝状聚合物更具效力。我们的结果表明,尺寸、功能性端基和亲水性是设计高效抗菌树枝状聚合物时需要考虑的重要参数。